Tsinghua University

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B82Y 30/00 - Nanotechnology for materials or surface science, e.g. nanocomposites 162
H01L 51/00 - Solid state devices using organic materials as the active part, or using a combination of organic materials with other materials as the active part; Processes or apparatus specially adapted for the manufacture or treatment of such devices, or of parts thereof 152
B82Y 40/00 - Manufacture or treatment of nanostructures 120
G01V 5/00 - Prospecting or detecting by the use of nuclear radiation, e.g. of natural or induced radioactivity 72
H01L 29/06 - Semiconductor bodies characterised by the shapes, relative sizes, or dispositions of the semiconductor regions 67
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1.

METHOD AND APPARATUS OF BOUNDARY REFINEMENT FOR INSTANCE SEGMENTATION

      
Application Number 18546811
Status Pending
Filing Date 2021-03-03
First Publication Date 2024-04-18
Owner
  • Robert Bosch GmbH (Germany)
  • TSINGHUA UNIVERSITY (China)
Inventor
  • Tang, Chufeng
  • Chen, Hang
  • Li, Jianmin
  • Li, Xiao
  • Hu, Xiaolin
  • Yang, Hao

Abstract

Methods and apparatuses of boundary refinement for instance segmentation. The methods for instance segmentation include receiving an image and an instance mask identifying an instance in the image; extracting a set of image patches from the image based on a boundary of the instance mask; generating a refined mask patch for each of the set of image patches based on at least a part of the instance mask corresponding to the each of the set of image patches; and refining the boundary of the instance mask based on the refined mask patch for each of the set of image patches.

IPC Classes  ?

  • G06T 7/12 - Edge-based segmentation
  • G06T 7/13 - Edge detection
  • G06V 20/70 - Labelling scene content, e.g. deriving syntactic or semantic representations

2.

PYRIDINE-2-AMINE DERIVATIVE AND PHARMACEUTICAL COMPOSITION AND USE THEREOF

      
Application Number 18259762
Status Pending
Filing Date 2021-12-31
First Publication Date 2024-04-11
Owner TSINGHUA UNIVERSITY (China)
Inventor
  • Liao, Xuebin
  • Wang, Zhisong
  • Zhang, Yan

Abstract

Disclosed in the present invention are a pyridine-2-amine derivative and a pharmaceutical composition and use thereof. The pyridine-2-amine derivative can be used as a TLR8 selective agonist, has the characteristics of high selectivity, strong activity and high safety, can be used for preventing and/or treating diseases related to TLR activity, for example, diseases caused by or related to pathogen infection, immunological diseases, inflammation, and tumors, can also be used for preparing a vaccine adjuvant to enhance immune response, and has better application prospects and research and development value.

IPC Classes  ?

  • C07F 9/58 - Pyridine rings
  • A61K 45/06 - Mixtures of active ingredients without chemical characterisation, e.g. antiphlogistics and cardiaca
  • C07D 213/73 - Unsubstituted amino or imino radicals
  • C07D 401/10 - Heterocyclic compounds containing two or more hetero rings, having nitrogen atoms as the only ring hetero atoms, at least one ring being a six-membered ring with only one nitrogen atom containing two hetero rings linked by a carbon chain containing aromatic rings
  • C07D 413/10 - Heterocyclic compounds containing two or more hetero rings, at least one ring having nitrogen and oxygen atoms as the only ring hetero atoms containing two hetero rings linked by a carbon chain containing aromatic rings
  • C07D 471/04 - Ortho-condensed systems
  • C07D 491/107 - Spiro-condensed systems with only one oxygen atom as ring hetero atom in the oxygen-containing ring

3.

Crosslinked copolymer having repeating unit carrying amide group and carboxyl and/or its ammonium salt and repeating unit of a-monoolefin

      
Application Number 18255626
Status Pending
Filing Date 2021-01-07
First Publication Date 2024-04-04
Owner TSINGHUA UNIVERSITY (China)
Inventor
  • Yang, Wantai
  • Huang, Yanbin

Abstract

The present disclosure relates to a copolymer A, which has (i) at least one repeating unit carrying an amide group and a carboxyl and/or its ammonium salt, (ii) at least one repeating unit derived from linear or branched C2-C18 α-monoolefin, and (iii) at least one repeating unit derived from a monomer having at least two carbon-carbon unsaturated double bonds. The present disclosure also relates to an article comprising a component formed from the adhesive of the present invention.

IPC Classes  ?

  • C08F 222/08 - Maleic anhydride with vinyl aromatic monomers
  • C08L 45/00 - Compositions of homopolymers or copolymers of compounds having no unsaturated aliphatic radicals in a side chain, and having one or more carbon-to-carbon double bonds in a carbocyclic or in a heterocyclic ring system; Compositions of derivatives of such polymers
  • C09J 145/00 - Adhesives based on homopolymers or copolymers of compounds having no unsaturated aliphatic radicals in a side chain, and having one or more carbon-to-carbon double bonds in a carbocyclic or in a heterocyclic ring system; Adhesives based on derivatives of such polymers

4.

GRAPHENE HEATING CHIP AND METHOD FOR MAKING THE SAME

      
Application Number 18129012
Status Pending
Filing Date 2023-03-30
First Publication Date 2024-04-04
Owner
  • Tsinghua University (China)
  • HON HAI PRECISION INDUSTRY CO., LTD. (Taiwan, Province of China)
Inventor
  • Liang, Liang
  • Zhao, Jie
  • Wei, Yang
  • Li, Qun-Qing
  • Fan, Shou-Shan

Abstract

A graphene heating chip includes a substrate, an insulating layer, a graphene film, and a plurality of electrodes. The substrate has two opposite a first surface and a second surface, and the substrate defines a through hole. The insulating layer is suspended on the substrate. The insulating layer covering the through hole and not in direct contact with the first surface is defined as a window, and a plurality of grooves are formed on the window. The graphene film covers the window, and the graphene film includes a first graphene film portion and a second graphene film portion, and the first graphene film portion and the second graphene film portion are spaced apart from each other. The plurality of electrodes are located on the surface of the insulating layer away from the substrate. The present application also provides a method for making the graphene heating chip.

IPC Classes  ?

  • H05B 3/14 - Heating elements characterised by the composition or nature of the materials or by the arrangement of the conductor characterised by the composition or nature of the conductive material the material being non-metallic
  • H05B 3/03 - Electrodes

5.

METHOD FOR CALIBRATING A TEMPERATURE OF A GRAPHENE HEATING CHIP

      
Application Number 18129017
Status Pending
Filing Date 2023-03-30
First Publication Date 2024-04-04
Owner
  • Tsinghua University (China)
  • HON HAI PRECISION INDUSTRY CO., LTD. (Taiwan, Province of China)
Inventor
  • Zhao, Jie
  • Liang, Liang
  • Wei, Yang
  • Li, Qun-Qing
  • Fan, Shou-Shan

Abstract

A graphene heating chip includes a substrate, an insulating layer, a graphene film, and a plurality of electrodes. The substrate has two opposite a first surface and a second surface, and the substrate defines a through hole. The insulating layer is suspended on the substrate. The insulating layer covering the through hole and not in direct contact with the first surface is defined as a window, and a plurality of grooves are formed on the window. The graphene film covers the window, and the graphene film includes a first graphene film portion and a second graphene film portion, and the first graphene film portion and the second graphene film portion are spaced apart from each other. The plurality of electrodes are located on the surface of the insulating layer away from the substrate. The present application also provides a method for calibrating a temperature of the graphene heating chip.

IPC Classes  ?

  • G01K 15/00 - Testing or calibrating of thermometers
  • G01R 27/02 - Measuring real or complex resistance, reactance, impedance, or other two-pole characteristics derived therefrom, e.g. time constant
  • H05B 3/03 - Electrodes
  • H05B 3/14 - Heating elements characterised by the composition or nature of the materials or by the arrangement of the conductor characterised by the composition or nature of the conductive material the material being non-metallic

6.

RADIOGRAPHIC INSPECTION DEVICE AND METHOD OF INSPECTING OBJECT

      
Application Number 18284913
Status Pending
Filing Date 2022-01-18
First Publication Date 2024-03-28
Owner
  • Tsinghua University (China)
  • NUCTECH COMPANY LIMITED (China)
Inventor
  • Chen, Zhiqiang
  • Zhang, Li
  • Cheng, Yi
  • Huang, Qingping
  • Hong, Mingzhi
  • Qiu, Minghua
  • Zhang, Yao
  • Yang, Jianxue
  • Zheng, Lei

Abstract

A radiographic inspection device and a method of inspecting an object are provided. The radiographic inspection device includes a support frame, where an inspection space applicable to inspect an object is formed within the support frame, and the inspection space has a first opening connecting to an outside; a transfer mechanism applicable to carry the object and move through the inspection space; a shielding curtain mounted at the first opening; and a driving mechanism. The driving mechanism includes: a driver mounted on the support frame; and a joint portion, where an upper end of the shielding curtain is connected to the joint portion. The driver is configured to synchronously drive two ends of the joint portion, so that the shielding curtain moves up and down with the joint portion to open or close the first opening.

IPC Classes  ?

7.

METHOD AND DEVICE FOR CONSTRUCTING INTEGRATED SPACE-TERRESTRIAL NETWORK

      
Application Number 18013227
Status Pending
Filing Date 2022-03-24
First Publication Date 2024-03-28
Owner TSINGHUA UNIVERSITY (China)
Inventor
  • Li, Yuanjie
  • Li, Hewu
  • Liu, Jiayi
  • Liu, Wei
  • Liu, Lixin
  • Wu, Qian
  • Liu, Jun
  • Lai, Zeqi

Abstract

Provided by the present application are a method and a device for constructing integrated space-terrestrial network, the method including: obtaining a target constellation and standardizing a relative motion between each target satellite in the target constellation and earth's surface according to a principle of making a satellite running in a recursive earth-repeat orbit have fixed satellite subpoint trajectories; obtaining a recursively extended topological structure according to the target constellation; according to the extended topological structure, dividing geographical cells and obtaining a mapping relationship between the geographical cells and the satellite subpoint trajectories to facilitate network addressing and networking management based on geographical location; and performing, based on a deployment rule, a recursive incremental deployment according to the extended satellite network topological structure, and realizing integrated space-terrestrial network.

IPC Classes  ?

8.

GENERALIZED ESTIMATOR (GE), AND GENERALIZED DISTURBANCE REJECTION CONTROLLER (GDRC) AND DESIGN METHOD THEREOF

      
Application Number 18050721
Status Pending
Filing Date 2022-10-28
First Publication Date 2024-03-21
Owner Tsinghua University (China)
Inventor
  • Liu, Shaojie
  • Li, Donghai
  • Zhu, Min

Abstract

The present disclosure belongs to the field of estimators, and provides a generalized estimator (GE), and a generalized disturbance rejection controller (GDRC) and a design method thereof. The GE includes an inner-loop estimation controller and a nominal model module of a controlled object. The inner-loop estimation controller transmits a control signal to the nominal model module. The nominal model module includes a nominal model of the controlled object. The GE is structurally uniform, and functionally interchangeable. With the structure of the GE, the typical disturbance rejection controller (DRC) is unified to a same control framework to obtain the GDRC that is more universal. The GDRC can design different control strategies according to existing conditions of most systems.

IPC Classes  ?

  • G05B 17/02 - Systems involving the use of models or simulators of said systems electric

9.

ANTENNA STRUCTURE, ELECTRONIC DEVICE, AND WIRELESS NETWORK SYSTEM

      
Application Number 18274465
Status Pending
Filing Date 2022-12-28
First Publication Date 2024-03-21
Owner
  • Honor Device Co., Ltd. (China)
  • TSINGHUA UNIVERSITY (China)
Inventor
  • Zhang, Xiaopeng
  • Zhang, Zhijun
  • Zhou, Dawei

Abstract

An antenna structure, an electronic device, and a wireless network system are provided, and relate to the field of antenna technologies. A patch antenna array includes four patch antennas. The four patch antennas are arranged in two rows and two columns. One of the feeding structures is included between two of the patch antennas in each row. One of the feeding structures is included between two of the patch antennas in each column. The feeding structure located between the two patch antennas in each column is connected to the first feeding port, so that the four patch antennas all generate polarization in a first direction. The feeding structure located between the two patch antennas in each row is connected to the second feeding port, so that the four patch antennas all generate polarization in a second direction.

IPC Classes  ?

  • H01Q 21/06 - Arrays of individually energised antenna units similarly polarised and spaced apart
  • H01Q 9/04 - Resonant antennas
  • H01Q 21/00 - Antenna arrays or systems

10.

CONVEYING DEVICE AND INSPECTION SYSTEM

      
Application Number 18255072
Status Pending
Filing Date 2021-11-22
First Publication Date 2024-03-21
Owner
  • NUCTECH COMPANY LIMITED (China)
  • TSINGHUA UNIVERSITY (China)
Inventor
  • Zhang, Li
  • Chen, Zhiqiang
  • Li, Yuanjing
  • Huang, Qingping
  • Guo, Weijun
  • Yao, Liming
  • Ding, Hui
  • Liu, Junhao
  • Zhou, Jiajia

Abstract

A conveying device (100) and an inspection system (1000) are provided. The conveying device includes: a first support frame (1); a first conveying mechanism (2) and a second conveying mechanism (3) which are installed on the first support frame; and a switching mechanism (4) configured to selectively lift the first conveying mechanism or the second conveying mechanism in a vertical direction, such that the first conveying mechanism or the second conveying mechanism carries goods (401) and conveys the goods in a first horizontal direction or a second horizontal direction different from the first horizontal direction. The conveying device may achieve a positioning and a smooth continuous conveying of goods, and achieve a smooth conveying and a calibrated positioning of the goods in different postures.

IPC Classes  ?

11.

RADIATION INSPECTION SYSTEM

      
Application Number 18259772
Status Pending
Filing Date 2021-12-15
First Publication Date 2024-03-14
Owner
  • NUCTECH COMPANY LIMITED (China)
  • TSINGHUA UNIVERSITY (China)
Inventor
  • Chen, Zhiqiang
  • Liu, Lei
  • Sun, Shangmin
  • Zong, Chunguang
  • Hu, Yu
  • Ma, Yuan
  • Ji, Zheng

Abstract

The present disclosure provides a radiation inspection system, including a container respectively provided with an entrance and an exit on opposite side walls thereof; and a radiation scanning imaging device disposed in the container and having an inspection channel. The radiation scanning imaging device includes a ray source, the ray source includes ray generators, and ray generators are configured to emit ray beams at different angles, so that the radiation scanning imaging device performs radiation scanning inspection on an object to be inspected passing through the inspection channel from the entrance to the exit.

IPC Classes  ?

  • G01N 23/04 - Investigating or analysing materials by the use of wave or particle radiation, e.g. X-rays or neutrons, not covered by groups , or by transmitting the radiation through the material and forming images of the material
  • G01N 23/10 - Investigating or analysing materials by the use of wave or particle radiation, e.g. X-rays or neutrons, not covered by groups , or by transmitting the radiation through the material and measuring the absorption the material being confined in a container, e.g. in luggage X-ray scanners
  • G01V 5/00 - Prospecting or detecting by the use of nuclear radiation, e.g. of natural or induced radioactivity

12.

METHOD AND APPARATUS FOR DEEP NEURAL NETWORKS HAVING ABILITY FOR ADVERSARIAL DETECTION

      
Application Number 18263576
Status Pending
Filing Date 2021-02-26
First Publication Date 2024-03-14
Owner
  • Robert Bosch GmbH (Germany)
  • TSINGHUA UNIVERSITY (China)
Inventor
  • Su, Hang
  • Zhu, Jun
  • Deng, Zhijie
  • Cheng, Ze

Abstract

A method for training a deep neural network (DNN) capable of adversarial detection. The DNN is configured with a plurality of sets of weights candidates. The method includes inputting training data selected from training data set to the DNN. The method further includes calculating, based on the training data, a first term for indicating a difference between a variational posterior probability distribution and a true posterior probability distribution of the DNN. The method further includes perturbing the training data to generate perturbed training data; and calculating a second term for indicating a quantification of predictive uncertainty on the perturbed training data. The method further includes updating the plurality of sets of weights candidates of the DNN based on augmenting the summation of the first term and the second term.

IPC Classes  ?

13.

SYSTEMS AND METHODS FOR GENERAL-PURPOSE OUT-OF-CORE RANDOM WALK GRAPH COMPUTING

      
Application Number 17902200
Status Pending
Filing Date 2022-09-02
First Publication Date 2024-03-07
Owner Tsinghua University (China)
Inventor
  • Chen, Kang
  • Wu, Yongwei
  • Jiang, Jinlei
  • Wang, Shuke
  • Ma, Shaonan
  • Yang, Ke
  • Zhang, Mingxing

Abstract

Systems and methods are provided for performing random walk graph computing. One method may comprise generating a subset of walkers on a graph, maintaining the generated subset of walkers in a walker pool in a memory, loading a coarse-grained block of the graph from a non-volatile storage into a block buffer of the memory, generating pre-sampled edges for vertices in the coarse-grained block, storing the pre-sampled edges into a pre-sampled edge buffer allocated for the coarse-grained block and moving one or more walkers of the generated subset of walkers using the pre-sampled edges stored in the pre-sampled edge buffer. The generated subset of walkers may have an initial number determined based on a memory space allocated to the walker pool.

IPC Classes  ?

  • G06F 16/901 - Indexing; Data structures therefor; Storage structures
  • G06F 9/54 - Interprogram communication
  • G06F 15/78 - Architectures of general purpose stored program computers comprising a single central processing unit

14.

HYBRID SAMPLING FOR A GENERAL-PURPOSE TEMPORAL GRAPH RANDOM WALK ENGINE

      
Application Number 17902227
Status Pending
Filing Date 2022-09-02
First Publication Date 2024-03-07
Owner Tsinghua University (China)
Inventor
  • Wu, Yongwei
  • Jiang, Jinlei
  • Chen, Kang
  • Huan, Chengying

Abstract

Systems and methods are provided for performing temporal graph computing. One method may include ordering out edges in a candidate edge set of a vertex in deceasing time, grouping the out edges into a plurality of trunks with at least one of the plurality of trunks being a multi-edge trunk having two or more edges, generating a plurality of alias tables to record content of the plurality of trunks, performing inverse transform sampling on the plurality of trunks to choose a first trunk of interest, determining that the first trunk of interest is a complete multi-edge trunk with a plurality of edges arranged in a plurality of buckets and each bucket has an average weight of a total weight of the plurality of edges and sampling an edge from the plurality of edges by alias table sampling.

IPC Classes  ?

15.

METHOD AND APPARATUS FOR GENERATING TRAINING DATA FOR GRAPH NEURAL NETWORK

      
Application Number 18259563
Status Pending
Filing Date 2021-01-04
First Publication Date 2024-03-07
Owner
  • Robert Bosch GmbH (Germany)
  • TSINGHUA UNIVERSITY (China)
Inventor
  • Su, Hang
  • Zhu, Jun
  • Wang, Zhengyi
  • Yang, Hao

Abstract

A method for generating adversarial examples for a Graph Neural Network (GNN) model. The method includes: determining vulnerable features of target nodes in a graph based on querying the GNN model, wherein the graph comprising nodes including the target nodes and edges, each of the edges connecting two of the nodes; grouping the target nodes into a plurality of clusters according to the vulnerable features of the target nodes; and obtaining the adversarial examples based on the plurality of clusters.

IPC Classes  ?

16.

METHOD FOR DETECTING WHOLE TRANSCRIPTOME RNA STRUCTURE AND USE THEREOF

      
Application Number 18260442
Status Pending
Filing Date 2020-11-16
First Publication Date 2024-03-07
Owner TSINGHUA UNIVERSITY (China)
Inventor
  • Zhang, Qiangfeng
  • Zhang, Jinsong

Abstract

A method for detecting a whole transcriptome RNA structure and the use thereof A method for detecting an intact RNA structure by combining in vivo click chemistry selective 2′-hydroxy acylation and mutation map analysis. Combined with the RNA immunoprecipitation technology, the method is further applied to analyze a RNA structure map of Dicer-bound substrates, and reveals the structural type and characteristics of the Dicer substrates. The method provided for detecting a whole transcriptome RNA structure can also perform complete full-length structure analysis on small RNAs, thereby laying the foundation for the research on the structure and biological functions of RNA molecules in a whole transcriptome in cells.

IPC Classes  ?

  • C12Q 1/6874 - Methods for sequencing involving nucleic acid arrays, e.g. sequencing by hybridisation [SBH]
  • C12Q 1/6858 - Allele-specific amplification

17.

METHOD AND SYSTEM FOR SEMANTIC-DRIVEN INTELLIGENT RECONSTRUCTION OF LARGE-SCENE SPARSE LIGHT FIELD

      
Application Number 18454513
Status Pending
Filing Date 2023-08-23
First Publication Date 2024-03-07
Owner TSINGHUA UNIVERSITY (China)
Inventor
  • Fang, Lu
  • Ying, Haiyang
  • Zhang, Jinzhi

Abstract

A method includes: acquiring a semantic primitive set of a multi-view image set; acquiring a coordinate offset by inputting coordinate information and a feature vector corresponding to a first grid sampling point of the semantic primitive set into a first network model, and acquiring a second grid of the semantic primitive set based on the coordinate offset and geometric attribute information of the semantic primitive set; acquiring first feature information of a second grid sampling point by inputting coordinate information and a feature vector corresponding to the second grid sampling point, and an observation angle value into a second network model, and acquiring second feature information of the semantic primitive set based on the first feature information; and acquiring a light field reconstruction result of the multi-view image set based on an observation angle value of the semantic primitive set and third feature information extracted from the second feature information.

IPC Classes  ?

18.

ZINC-BASED METAL ORGANIC NANOPARTICLE, PREPARATION METHOD THEREFOR, AND PHOTORESIST

      
Application Number 18259262
Status Pending
Filing Date 2021-12-23
First Publication Date 2024-03-07
Owner
  • TSINGHUA UNIVERSITY (China)
  • BEIJING VFORTUNE NEW ENERGY POWER TECHNOLOGY DEVELOPMENT CO., LTD. (China)
Inventor
  • Xu, Hong
  • He, Xiangming
  • Cui, Hao

Abstract

Disclosed are a zinc-based metal organic nanoparticle and a preparation method therefor, and a photoresist. The zinc-based metal organic nanoparticle has a core-shell structure, and the general formula is ZnxOy[A]2x[B]2, wherein x is 2 or 3, and 2x≤y≤4x, ZnxOy is a kernel of the core-shell structure, A is a first organic ligand, B is a second organic ligand, the first organic ligand A and the second organic ligand B together form an outer shell of the core-shell structure, the first organic ligand A is selected from one or more of a substituted or unsubstituted aliphatic group and a substituted or unsubstituted aromatic group, and the second organic ligand B is selected from one or more of an organic amine and a derivative thereof.

IPC Classes  ?

  • G03F 7/00 - Photomechanical, e.g. photolithographic, production of textured or patterned surfaces, e.g. printed surfaces; Materials therefor, e.g. comprising photoresists; Apparatus specially adapted therefor
  • G03F 7/004 - Photosensitive materials

19.

EXPOSURE LIGHT BEAM PHASE MEASUREMENT METHOD IN LASER INTERFERENCE PHOTOLITHOGRAPHY, AND PHOTOLITHOGRAPHY SYSTEM

      
Application Number 17767399
Status Pending
Filing Date 2020-10-23
First Publication Date 2024-02-22
Owner
  • TSINGHUA UNIVERSITY (China)
  • BEIJING U-PRECISION TECH CO., LTD. (China)
Inventor
  • Wang, Leijie
  • Zhu, Yu
  • Zhang, Ming
  • Xu, Jitao
  • Cheng, Rong
  • Li, Xin
  • Yang, Kaiming
  • Hu, Jinchun

Abstract

An exposure light beam phase measurement method for laser interference photolithography comprises: separating a measurement light from an exposure light beam and inputting light into a laser phase measurement interferometer to carry out phase measurement on the exposure light beam; inputting a reference light beam homologous with the exposure light beam into the laser phase measurement interferometer; processing the reference light beam to form an interference measurement optical signal; calculating to obtain the phase of the exposure light beam. A laser interference photolithography system using the method comprises a laser phase measurement interferometer, a controller and phase modulators, the laser phase measurement interferometer measures whether the phase of an exposure light beam drifts, the controller controls phase modulators to carry out phase modulation, to achieve locking of exposure stripe phase drift and manufacturing of a high-precision variable-period optical grating.

IPC Classes  ?

  • G03F 7/00 - Photomechanical, e.g. photolithographic, production of textured or patterned surfaces, e.g. printed surfaces; Materials therefor, e.g. comprising photoresists; Apparatus specially adapted therefor
  • G03F 7/20 - Exposure; Apparatus therefor

20.

LOGIC GATE DEVICE

      
Application Number 18220868
Status Pending
Filing Date 2023-07-12
First Publication Date 2024-02-22
Owner
  • Tsinghua University (China)
  • HON HAI PRECISION INDUSTRY CO., LTD. (Taiwan, Province of China)
Inventor
  • Zhang, Guang-Qi
  • Wei, Yang
  • Fan, Shou-Shan

Abstract

The present application provides a logic gate device. The logic gate device includes a gate electrode, a gate insulating layer, a bottom electrode, a two-dimensional semiconductor layer, a first top electrode and a second electrode. The gate insulating layer is located on the gate electrode. The bottom electrode is located on the gate insulating layer. The two-dimensional semiconductor layer is located on the bottom electrode and simultaneously covers the gate insulating layer. The first top electrode and the second electrode are located on the two-dimensional semiconductor layer. The bottom electrode, the two-dimensional semiconductor layer and the gate insulating layer form an air gap, and the air gap is distributed at both sides of the bottom electrode. The gate electrode is configured to connect a gate voltage, and the first top electrode and the second top electrode are configured to connect a signal input terminal.

IPC Classes  ?

  • H01L 29/68 - Types of semiconductor device controllable by only the electric current supplied, or only the electric potential applied, to an electrode which does not carry the current to be rectified, amplified, or switched
  • H03K 19/08 - Logic circuits, i.e. having at least two inputs acting on one output; Inverting circuits using specified components using semiconductor devices
  • H01L 29/24 - Semiconductor bodies characterised by the materials of which they are formed including, apart from doping materials or other impurities, only inorganic semiconductor materials not provided for in groups , ,  or
  • H01L 29/76 - Unipolar devices

21.

INVERTER

      
Application Number 18220869
Status Pending
Filing Date 2023-07-12
First Publication Date 2024-02-22
Owner
  • Tsinghua University (China)
  • HON HAI PRECISION INDUSTRY CO., LTD. (Taiwan, Province of China)
Inventor
  • Zhang, Guang-Qi
  • Wei, Yang
  • Fan, Shou-Shan

Abstract

The present application provides an inverter. The inverter includes a gate electrode, a gate insulating layer, a bottom electrode, a two-dimensional semiconductor layer, a first top electrode and a second electrode. The gate insulating layer is located on the gate electrode. The bottom electrode is located on the gate insulating layer. The two-dimensional semiconductor layer is located on the bottom electrode and simultaneously covers the gate insulating layer. The first top electrode and the second electrode are located on the two-dimensional semiconductor layer. The bottom electrode, the two-dimensional semiconductor layer and the gate insulating layer form air gaps, and the air gaps are distributed at both sides of the bottom electrode. The gate electrode is configured to connect with a signal input terminal, the bottom electrode is configured to connect with a signal output terminal.

IPC Classes  ?

  • H01L 29/778 - Field-effect transistors with two-dimensional charge carrier gas channel, e.g. HEMT
  • H01L 29/417 - Electrodes characterised by their shape, relative sizes or dispositions carrying the current to be rectified, amplified or switched
  • H01L 29/423 - Electrodes characterised by their shape, relative sizes or dispositions not carrying the current to be rectified, amplified or switched
  • H02M 1/088 - Circuits specially adapted for the generation of control voltages for semiconductor devices incorporated in static converters for the simultaneous control of series or parallel connected semiconductor devices
  • H02M 7/5387 - Conversion of dc power input into ac power output without possibility of reversal by static converters using discharge tubes with control electrode or semiconductor devices with control electrode using devices of a triode or transistor type requiring continuous application of a control signal using semiconductor devices only, e.g. single switched pulse inverters in a bridge configuration

22.

RETRIEVAL METHOD AND APPARATUS FOR RESERVOIR WATER STORAGE

      
Application Number 18234384
Status Pending
Filing Date 2023-08-16
First Publication Date 2024-02-22
Owner TSINGHUA UNIVERSITY (China)
Inventor
  • Long, Di
  • Wang, Yi-Ming
  • Li, Xing-Dong

Abstract

A retrieval method and a retrieval apparatus for reservoir water storage. The retrieval method includes the following steps. A synthetic aperture radar (SAR) image sequence of a target local waters in a target reservoir is acquired. A water area sequence of the target local waters is determined according to the SAR image sequence. A first relationship between a water level of the target reservoir and a water area of the target local waters of the target reservoir is obtained. The water area sequence is converted into a target water level sequence according to the first relationship. And a water storage sequence of the target reservoir is obtained according to a water level-water storage relationship curve and the target water level sequence.

IPC Classes  ?

  • G01S 13/90 - Radar or analogous systems, specially adapted for specific applications for mapping or imaging using synthetic aperture techniques
  • G01C 13/00 - Surveying specially adapted to open water, e.g. sea, lake, river or canal
  • G06V 10/44 - Local feature extraction by analysis of parts of the pattern, e.g. by detecting edges, contours, loops, corners, strokes or intersections; Connectivity analysis, e.g. of connected components
  • G06V 10/764 - Arrangements for image or video recognition or understanding using pattern recognition or machine learning using classification, e.g. of video objects
  • G06V 10/774 - Generating sets of training patterns; Bootstrap methods, e.g. bagging or boosting
  • G06V 20/13 - Satellite images

23.

METHOD AND APPARATUS FOR CALCULATING CARBON EMISSION RESPONSE BASED ON CARBON EMISSION FLOWS

      
Application Number 18491812
Status Pending
Filing Date 2023-10-23
First Publication Date 2024-02-22
Owner TSINGHUA UNIVERSITY (China)
Inventor
  • Yu, Yanghao
  • Li, Yaowang
  • Du, Ershun
  • Wang, Peng
  • Liu, Yuliang
  • Wei, Zhaoyi
  • Zhang, Ning
  • Kang, Chongqing

Abstract

The present disclosure provides a method and apparatus for calculating carbon emission response based on carbon emission flows. The method includes: calculating a total carbon flow rate of a power system from a carbon flow rate of each of carbon meter users, the carbon flow rate being obtained based on a carbon emission flow of the carbon meter user; determining whether the total carbon flow rate is greater than a carbon emission response threshold; and calculating, in response to determining that the total carbon flow rate is greater than the carbon emission response threshold, a target carbon emission reduction of one or more of the carbon meter users during a carbon emission response period based on target carbon emission response demand, and initiating a carbon emission response based on the target carbon emission reduction.

IPC Classes  ?

24.

Method and device for gigapixel-level light field intelligent reconstruction of large-scale scene

      
Application Number 18351742
Grant Number 11908067
Status In Force
Filing Date 2023-07-13
First Publication Date 2024-02-20
Grant Date 2024-02-20
Owner Tsinghua University (China)
Inventor
  • Fang, Lu
  • Wang, Guangyu
  • Zhang, Jinzhi

Abstract

A method and a device for gigapixel-level light field intelligent reconstruction of a large-scale scene are provided. The method includes: obtaining a coarse three-dimensional geometric model based on a multi-view three-dimensional reconstruction system; constructing an implicit representation of the meta-deformed manifold on the coarse three-dimensional geometric model; and optimizing the implicit representation of the meta-deformed manifold to obtain the light field reconstruction in the form of free viewpoint rendering of the large-scale scene.

IPC Classes  ?

  • G06T 17/20 - Wire-frame description, e.g. polygonalisation or tessellation
  • G06T 15/20 - Perspective computation
  • G06T 3/40 - Scaling of a whole image or part thereof

25.

METHOD FOR DETECTING RNA STRUCTURE AT WHOLE TRANSCRIPTOME LEVEL AND USE THEREOF

      
Application Number 18260438
Status Pending
Filing Date 2020-11-05
First Publication Date 2024-02-15
Owner TSINGHUA UNIVERSITY (China)
Inventor
  • Zhang, Qiangfeng
  • Piao, Meiling

Abstract

Provided in the present invention are a method for detecting an RNA structure and the use thereof. According to the present invention, the step of removing the background of reverse transcription termination signals is included in the method for detecting an RNA structure, and false positive signals in a structural score calculation are reduced, and therefore the accuracy of the detection method is improved.

IPC Classes  ?

26.

HOTPATCH METHOD FOR VULNERABILITIES IN EMBEDDED IOT DEVICES

      
Application Number 18446227
Status Pending
Filing Date 2023-08-08
First Publication Date 2024-02-15
Owner TSINGHUA UNIVERSITY (China)
Inventor
  • Li, Qi
  • He, Yi
  • Xu, Ke
  • Liu, Zhuotao
  • Zou, Zhenhua

Abstract

The present disclosure discloses a hotpatch method for vulnerabilities in embedded Internet of Things (IoT) devices. The method includes acquiring vulnerability information of the embedded IoT devices to be patched; selecting a corresponding vulnerability patching mode based on different vulnerability types of the vulnerability information, and acquiring an eBPF patch bytecode file (first patch) and an eBPF patch code configuration file from a server according to the vulnerability patching mode; compiling the eBPF patch bytecode based on the eBPF patch bytecode and the eBPF patch code configuration file to generate a patch binary code file (second patch) and configuration information of the patch binary code; and adopting three approaches to trigger the patch binary code to patch the vulnerability information based on the configuration information and the vulnerability patching mode.

IPC Classes  ?

  • G06F 8/658 - Incremental updates; Differential updates

27.

FOURIER TRANSFORM SPECTROMETER APPLICABLE IN AN ARRAY OF COFERENT LIGHT SOURCES

      
Application Number 18231809
Status Pending
Filing Date 2023-08-09
First Publication Date 2024-02-15
Owner
  • Tsinghua University (China)
  • HON HAI PRECISION INDUSTRY CO., LTD. (Taiwan, Province of China)
Inventor
  • Lai, Li-Wen
  • Liu, Peng
  • Zhou, Duan-Liang
  • Li, Qun-Qing
  • Fan, Shou-Shan

Abstract

The present invention relates to a Fourier transform spectrometer applicable in an array of coherent light sources, comprising: a light source, a light transmission device, a control circuit, a detector, an amplifying circuit, and a computer. The control circuit is electrically connected to the light transmission device for control the on-off of light in the light transmission device. The amplifying circuit is connected with the detector for recording and amplifying the photoelectric signal obtained by the detector. The computer is connected with the amplifying circuit. The computer is equipped with a spectral analysis software is used to perform Fourier transform. The Fourier transform spectrometer based on the coherent light source array further includes a coherent light source array. The light transmission device is used to transmit the light emitted by the light source to the coherent light source array.

IPC Classes  ?

  • G01N 21/35 - Investigating relative effect of material at wavelengths characteristic of specific elements or molecules, e.g. atomic absorption spectrometry using infrared light

28.

THREE-DIMENSIONAL IMAGING METHOD AND APPARATUS AND THREE-DIMENSIONAL IMAGING DEVICE

      
Application Number 18266140
Status Pending
Filing Date 2021-11-25
First Publication Date 2024-02-15
Owner
  • Nuctech Company Limited (China)
  • Tsinghua University (China)
Inventor
  • Zhao, Ziran
  • Liu, Xing
  • Qiao, Lingbo
  • Zheng, Zhimin
  • Jin, Yingkang
  • You, Yan

Abstract

The present application relates to a three-dimensional imaging method and apparatus, and a 3D imaging device. The method comprises generating 3D image information by capturing a 3D capture area containing a detected object using a depth camera; extracting a mask of the detected object from the 3D image information; determining an imaging area associated with the detected object based on the mask of the detected object; collecting data from a holographic data collection area containing the detected object by a holographic data collection device, generating holographic data; and performing image reconstruction on the imaging area based on the holographic data.

IPC Classes  ?

  • G06T 11/00 - 2D [Two Dimensional] image generation
  • G01S 13/89 - Radar or analogous systems, specially adapted for specific applications for mapping or imaging
  • G06T 7/11 - Region-based segmentation
  • G06N 3/084 - Backpropagation, e.g. using gradient descent
  • G01V 8/00 - Prospecting or detecting by optical means
  • G01S 13/88 - Radar or analogous systems, specially adapted for specific applications

29.

NOVEL NAMPT ENZYME AGONIST AND PREPARATION AND USE THEREOF

      
Application Number 18258346
Status Pending
Filing Date 2022-02-14
First Publication Date 2024-02-15
Owner TSINGHUA UNIVERSITY (China)
Inventor
  • Wang, Gelin
  • Tang, Yefeng
  • Yao, Hong
  • Liu, Minghui
  • Wang, Leibo
  • Li, Chenyu
  • Zhang, Ruoxi
  • Zu, Yumeng
  • Wu, Chuo
  • Li, Feifei
  • Chen, Shuangquan

Abstract

The present invention provides a class of novel NAMPT enzyme agonist and preparation and use thereof, which has a structural formula as shown in formula I or formula II. The present invention screens the NAMPT agonist NAT from the chemical small molecule library, and the NAT exhibits a good cytoprotective effect and a good anti-neurodegeneration effect in animal models of neurodegeneration. We studied the binding of NAT to enzymes, and then carried out multiple rounds of structure optimization based on the chemical structure characteristics of NAT and its enzyme activity properties, and obtained a relatively defined structure-activity relationship. The present patent not only lays the foundation for developing innovative drugs for anti-aging and neurodegenerative diseases, but also theoretically provides a proof-of-concept that enhancing NAMPT enzyme activity plays an important role in neuroprotection. The present invention provides a class of novel NAMPT enzyme agonist and preparation and use thereof, which has a structural formula as shown in formula I or formula II. The present invention screens the NAMPT agonist NAT from the chemical small molecule library, and the NAT exhibits a good cytoprotective effect and a good anti-neurodegeneration effect in animal models of neurodegeneration. We studied the binding of NAT to enzymes, and then carried out multiple rounds of structure optimization based on the chemical structure characteristics of NAT and its enzyme activity properties, and obtained a relatively defined structure-activity relationship. The present patent not only lays the foundation for developing innovative drugs for anti-aging and neurodegenerative diseases, but also theoretically provides a proof-of-concept that enhancing NAMPT enzyme activity plays an important role in neuroprotection.

IPC Classes  ?

  • C07F 5/02 - Boron compounds
  • C07C 235/24 - Carboxylic acid amides, the carbon skeleton of the acid part being further substituted by oxygen atoms having carbon atoms of carboxamide groups bound to acyclic carbon atoms and singly-bound oxygen atoms bound to the same carbon skeleton the carbon skeleton being acyclic and saturated having at least one of the singly-bound oxygen atoms further bound to a carbon atom of a six-membered aromatic ring, e.g. phenoxyacetamides having the nitrogen atom of at least one of the carboxamide groups bound to a carbon atom of a six-membered aromatic ring
  • C07D 213/65 - One oxygen atom attached in position 3 or 5
  • C07C 255/50 - Carboxylic acid nitriles having cyano groups bound to carbon atoms of six-membered aromatic rings of a carbon skeleton to carbon atoms of non-condensed six-membered aromatic rings
  • C07C 311/16 - Sulfonamides having sulfur atoms of sulfonamide groups bound to carbon atoms of six-membered aromatic rings having the nitrogen atom of at least one of the sulfonamide groups bound to hydrogen atoms or to an acyclic carbon atom
  • C07C 279/04 - Derivatives of guanidine, i.e. compounds containing the group the singly-bound nitrogen atoms not being part of nitro or nitroso groups having nitrogen atoms of guanidine groups bound to acyclic carbon atoms of a carbon skeleton
  • A61P 25/28 - Drugs for disorders of the nervous system for treating neurodegenerative disorders of the central nervous system, e.g. nootropic agents, cognition enhancers, drugs for treating Alzheimer's disease or other forms of dementia

30.

CELL GEL PREPARATION FOR REDUCING SHEAR DAMAGE ON CELLS AND METHOD FOR REDUCING SHEAR DAMAGE ON CELLS

      
Application Number 18286080
Status Pending
Filing Date 2021-10-08
First Publication Date 2024-02-15
Owner Tsinghua University (China)
Inventor
  • Liu, Dongsheng
  • Yu, Jiakuo
  • Yang, Bo
  • Yan, Xin
  • Li, Yujie
  • Zhou, Bini
  • Li, Xin

Abstract

The present invention relates to a cell gel preparation, which is used for treating and/or preventing acute or chronic osteoarthritis and/or symptoms thereof by means of intra-articular injection, wherein the preparation comprises a nucleic acid hydrogel loading mesenchymal stem cells. The present invention further relates to a method for treating or preventing acute and chronic osteoarthrosis and associated symptoms caused by inflammation (especially osteoarticular pain and activity or function loss) by means of using the cell gel preparation, and a method for reducing the shear damage on cells in a shear environment by means of using the nucleic acid hydrogel.

IPC Classes  ?

  • A61K 35/28 - Bone marrow; Haematopoietic stem cells; Mesenchymal stem cells of any origin, e.g. adipose-derived stem cells
  • A61K 9/06 - Ointments; Bases therefor
  • A61K 47/26 - Carbohydrates, e.g. sugar alcohols, amino sugars, nucleic acids, mono-, di- or oligo-saccharides; Derivatives thereof, e.g. polysorbates, sorbitan fatty acid esters or glycyrrhizin
  • A61K 9/00 - Medicinal preparations characterised by special physical form
  • A61P 19/02 - Drugs for skeletal disorders for joint disorders, e.g. arthritis, arthrosis

31.

CARBON EMISSION FLOW CALCULATION METHOD AND APPARATUS FOR REGIONAL INTEGRATED ENERGY SYSTEM

      
Application Number 18490744
Status Pending
Filing Date 2023-10-19
First Publication Date 2024-02-15
Owner TSINGHUA UNIVERSITY (China)
Inventor
  • Zhang, Ning
  • Yu, Yanghao
  • Cheng, Yaohua
  • Wang, Peng
  • Wei, Zhaoyi
  • Li, Yaowang
  • Du, Ershun
  • Kang, Chongqing

Abstract

Provided is a carbon emission flow calculation method for a regional integrated energy system. The method includes: establishing a single-period steady-state carbon emission flow model of an energy conversion device by modeling carbon emission of each single-input-single-output conversion device and each single-input-multi-output conversion device; obtaining a matrix expression of carbon emission flow based on the single-period steady-state carbon emission flow model of the energy conversion device and establishing a single-period steady-state carbon emission flow model of the regional integrated energy system; and establishing a standardized multi-period carbon emission flow model of the regional integrated energy system by combining a multi-period coupled steady-state carbon emission flow model of energy storage devices and the single-period steady-state carbon emission flow model of the regional integrated energy system, to obtain actual carbon emission flow of the regional integrated energy system by solving the standardized multi-period carbon emission flow model.

IPC Classes  ?

  • G06F 30/20 - Design optimisation, verification or simulation

32.

LASER INTERFERENCE PHOTOLITHOGRAPHY SYSTEM

      
Application Number 17767424
Status Pending
Filing Date 2020-10-23
First Publication Date 2024-02-15
Owner
  • TSINGHUA UNIVERSITY (USA)
  • BEIJING U-PRECISION TECH CO., LTD. (USA)
Inventor
  • Wang, Leijie
  • Zhu, Yu
  • Zhang, Ming
  • Xu, Jitao
  • Li, Xin
  • Cheng, Rong
  • Yang, Kaiming
  • Hu, Jinchun

Abstract

A laser interference photolithography system, comprising a laser device, a first reflector, a grating beam-splitter, a second reflector, a first universal reflector, a first lens, a second universal reflector, a second lens, a beam splitting prism, a control module, an angle measurement module, a third lens and a substrate. The control module comprises a signal processing terminal, a controller, and a driver. The signal processing terminal is connected to the angle measurement module, the controller is connected to both the signal processing terminal and the driver, and the driver is connected to both the first universal reflector and the second universal reflector. The laser emits a laser light that is split into two beams of light by the system, and the two beams of light are focused on the substrate for exposure.

IPC Classes  ?

33.

FIELD EFFECT TRANSISTOR AND METHOD FOR MAKING THE SAME

      
Application Number 18129004
Status Pending
Filing Date 2023-03-30
First Publication Date 2024-02-08
Owner
  • Tsinghua University (China)
  • HON HAI PRECISION INDUSTRY CO., LTD. (Taiwan, Province of China)
Inventor
  • Li, Xuan-Zhang
  • Wei, Yang
  • Fan, Shou-Shan
  • Zhang, Yue-Gang

Abstract

A field effect transistor includes a gate electrode, an insulating layer, a source electrode, a drain electrode, and a channel layer. The insulating layer is located on the surface of the gate electrode, and the channel layer is located on the surface of the insulating layer away from the gate electrode. The source electrode and the drain electrode are spaced apart from each on the surface of the channel layer away from the insulating layer. The source electrode and the drain electrode are one-dimensional structures. The present application further provides a method for making the field effect transistor.

IPC Classes  ?

  • H01L 29/775 - Field-effect transistors with one-dimensional charge carrier gas channel, e.g. quantum wire FET
  • H01L 29/06 - Semiconductor bodies characterised by the shapes, relative sizes, or dispositions of the semiconductor regions
  • H01L 29/786 - Thin-film transistors
  • H01L 29/66 - Types of semiconductor device

34.

HIERARCHICAL AUDIO-VISUAL FEATURE FUSING METHOD FOR AUDIO-VISUAL QUESTION ANSWERING AND PRODUCT

      
Application Number 18144274
Status Pending
Filing Date 2023-05-08
First Publication Date 2024-02-08
Owner Tsinghua University (China)
Inventor
  • Zhu, Wenwu
  • Wang, Xin
  • Yang, Pinci

Abstract

A hierarchical audio-visual feature fusing method for audio-visual question answering and a product relate to the field of audio-visual question answering. By fusing audio embedding in an input video clip with a baseline model as well as video embedding and question embedding respectively at an early stage, a middle stage and a late stage in a hierarchical feature fusing process, a first answer probability distribution, a second answer probability distribution and a third answer probability distribution are obtained, and the answer probability distributions are added based on preset weights, and then averaged for hierarchical integration to generate a final answer.

IPC Classes  ?

  • G06V 10/80 - Fusion, i.e. combining data from various sources at the sensor level, preprocessing level, feature extraction level or classification level

35.

METHOD AND APPARATUS OF FREQUENCY REGULATION OF POWER SYSTEM INVOLVING RENEWABLE ENERGY POWER GENERATION, DEVICE, AND STORAGE MEDIUM

      
Application Number 18228431
Status Pending
Filing Date 2023-07-31
First Publication Date 2024-02-08
Owner TSINGHUA UNIVERSITY (China)
Inventor
  • Liu, Feng
  • Zhang, Yun-Fan
  • Wu, Shi-Yong

Abstract

A method and an apparatus of frequency regulation of a power system involving renewable energy power generation, a computer device, and a non-transitory computer readable storage medium are provided. The method includes: constructing a system frequency dynamic model according to parameters associated with power generator sets in the power system, where the power generator sets comprise a renewable energy power generator set and a conventional energy power generator set; calculating secure operation indexes of the power system according to the system frequency dynamic model of the power system; and obtaining system comprehensive cost indexes of the power system, constructing a reserve allocation model of the power generator sets according to the system comprehensive cost indexes and the secure operation indexes of the power system, and regulating a system frequency of the power system according to the reserve allocation model.

IPC Classes  ?

  • H02J 3/46 - Controlling the sharing of output between the generators, converters, or transformers

36.

SECURE RELAY-BASED QUANTUM COMMUNICATION METHOD AND COMMUNICATION NETWORK

      
Application Number 18259072
Status Pending
Filing Date 2021-07-28
First Publication Date 2024-02-08
Owner TSINGHUA UNIVERSITY (China)
Inventor
  • Long, Guilu
  • Pan, Dong

Abstract

The present application provides a secure repeater-based quantum communication method and communication network. Said method comprises a transmitter encrypting plaintext information to be sent, to obtain ciphertext; the transmitter sending the ciphertext to a repeater node by means of a quantum communication protocol, so as to send the ciphertext to a receiver by means of at least one repeater node; and after receiving the ciphertext, the receiver decrypting the ciphertext to obtain the plaintext information. The ciphertext is transmitted step by step by means of the at least one repeater node, which is not limited to the distance between the transmitter and the receiver, so that the ciphertext can be transmitted over a long distance. Furthermore, before arriving at the receiver, the plaintext information is transmitted in the form of a ciphertext and is decrypted on the fly, thereby reducing the risk of information being eavesdropped, improving the security.

IPC Classes  ?

  • H04L 9/08 - Key distribution
  • H04L 9/06 - Arrangements for secret or secure communications; Network security protocols the encryption apparatus using shift registers or memories for blockwise coding, e.g. D.E.S. systems
  • H04B 10/079 - Arrangements for monitoring or testing transmission systems; Arrangements for fault measurement of transmission systems using an in-service signal using measurements of the data signal
  • H04B 10/29 - Repeaters

37.

TITANIUM ZIRCONIUM OXIDE NANOPARTICLES, PHOTORESIST AND PATTERNING METHOD THEREFOR, AND METHOD FOR GENERATING PRINTED CIRCUIT BOARD

      
Application Number 18266249
Status Pending
Filing Date 2021-12-07
First Publication Date 2024-02-08
Owner
  • TSINGHUA UNIVERSITY (China)
  • BEIJING VFORTUNE NEW ENERGY POWER TECHNOLOGY DEVELOPMENT CO., LTD. (China)
Inventor
  • Xu, Hong
  • He, Xiang-Ming
  • Wang, Xiao-Lin

Abstract

A photoresist, a photoresist composition, a method for patterning a photoresist and a method for preparing a printed circuit board are disclosed in the present application. The photoresist includes an organic solvent and titanium zirconium oxide nanoparticles. The general molecular formula of the titanium zirconium oxide nanoparticles is TixZryOzLn, wherein x, y and z are each independently an integer in a range from 1 to 6, n is an integer in a range from 5 to 30, and L is an organic ligand including a free-radical polymerizable group.

IPC Classes  ?

  • C01G 25/02 - Oxides
  • G03F 7/004 - Photosensitive materials
  • G03F 7/32 - Liquid compositions therefor, e.g. developers
  • G03F 7/028 - Non-macromolecular photopolymerisable compounds having carbon-to-carbon double bonds, e.g. ethylenic compounds with photosensitivity-increasing substances, e.g. photoinitiators
  • G03F 7/20 - Exposure; Apparatus therefor

38.

QUANTIZATION METHOD AND QUANTIZATION APPARATUS FOR WEIGHT OF NEURAL NETWORK, AND STORAGE MEDIUM

      
Application Number 18269445
Status Pending
Filing Date 2021-12-13
First Publication Date 2024-02-08
Owner TSINGHUA UNIVERSITY (China)
Inventor
  • Wu, Huaqiang
  • Zhang, Qingtian
  • Dai, Lingjun

Abstract

Disclosed are a quantization method and quantization apparatus for a weight of a neural network, and a storage medium. The neural network is implemented on the basis of a crossbar-enabled analog computing-in-memory (CACIM) system, and the quantization method includes: acquiring a distribution characteristic of a weight; and determining, according to the distribution characteristic of the weight, an initial quantization parameter for quantizing the weight to reduce a quantization error in quantizing the weight. The quantization method provided by the embodiments of the present disclosure does not pre-define the quantization method used, but determines the quantization parameter used for quantizing the weight according to the distribution characteristic of the weight to reduce the quantization error, so that the effect of the neural network model is better under the same mapping overhead, and the mapping overhead is smaller under the same effect of the neural network model.

IPC Classes  ?

39.

NOVEL METHOD FOR PRODUCING ANTIBODIES

      
Application Number 18338313
Status Pending
Filing Date 2023-06-20
First Publication Date 2024-02-08
Owner TSINGHUA UNIVERSITY (China)
Inventor
  • Lu, Bai
  • Yao, Hongyang
  • Guo, Wei

Abstract

The present disclosure relates to methods for producing an antibody or an antigen-binding fragment thereof specifically binding to an antigen of interest, methods for inducing proliferation of PBMCs, B cell activation and differentiation, B cell maturation, and/or promoting class switch in an antibody-producing PBMC to produce IgG, compositions for the in vitro immunization and methods for identifying an antibody-enhancing factor for in vitro immunization.

IPC Classes  ?

  • C07K 16/18 - Immunoglobulins, e.g. monoclonal or polyclonal antibodies against material from animals or humans
  • C12N 5/0784 - Dendritic cells; Progenitors thereof
  • C12N 5/0783 - T cells; NK cells; Progenitors of T or NK cells
  • C12N 5/077 - Mesenchymal cells, e.g. bone cells, cartilage cells, marrow stromal cells, fat cells or muscle cells

40.

MANUFACTURING METHOD FOR GRAPHITE SLIDER ARRAYS

      
Application Number 17923254
Status Pending
Filing Date 2020-06-28
First Publication Date 2024-02-08
Owner
  • RESEARCH INSTITUTE OF TSINGHUA UNIVERSITY IN SHENZHEN (China)
  • TSINGHUA UNIVERSITY (China)
Inventor
  • Zheng, Quanshui
  • Jiang, Haiyang
  • Tian, Kaiwen

Abstract

Provided is a manufacturing method for graphite slider arrays in batches. In this method, a grain structures examination step is added to a process of manufacturing graphite slider arrays, and a subsequent etching step is controlled so that only one horizontal grain boundary exists inside the graphite mesas, and when cleaved, the sliders slide away on the only grain boundary. The slider arrays prepared by this method have uniform easy-slip surfaces and thickness with good consistency.

IPC Classes  ?

  • B81C 1/00 - Manufacture or treatment of devices or systems in or on a substrate
  • B81B 5/00 - Devices comprising elements which are movable in relation to each other, e.g. comprising slidable or rotatable elements

41.

MICRO SPECTRUM CHIP BASED ON UNITS OF RANDOM SHAPES

      
Application Number 17423423
Status Pending
Filing Date 2020-10-12
First Publication Date 2024-02-08
Owner Tsinghua University (China)
Inventor
  • Cui, Kaiyu
  • Yang, Jiawei
  • Huang, Yidong
  • Zhang, Wei
  • Feng, Xue
  • Liu, Fang

Abstract

A micro spectrum chip based on units of random shapes, including. The micro spectrum chip include a CIS wafer and an optical modulation layer. The optical modulation layer includes several micro-nano structure units arranged on the surface of a photosensitive area of the CIS wafer. Each micro-nano structure unit includes a plurality of micro-nano structure arrays, and in each micro-nano structure unit, different micro-nano structure arrays are two-dimensional gratings composed of internal units of random shapes. In each micro-nano structure unit in this scheme, different micro-nano structure arrays have different shapes of internal units, and each group of micro-nano structure arrays have different modulation effects on lights with different wavelengths. The degree of freedom of “shape” is fully utilized to obtain a rich modulation effect on the incident light. A two-dimensional grating structure based on internal units of random shapes is utilized.

IPC Classes  ?

42.

METHOD FOR MEASURING AN INTERFACE RESISTANCE OF A FIELD EFFECT TRANSISTOR

      
Application Number 18129006
Status Pending
Filing Date 2023-03-30
First Publication Date 2024-02-01
Owner
  • Tsinghua University (China)
  • HON HAI PRECISION INDUSTRY CO., LTD. (Taiwan, Province of China)
Inventor
  • Li, Xuan-Zhang
  • Wei, Yang
  • Fan, Shou-Shan
  • Zhang, Yue-Gang

Abstract

A field effect transistor includes a gate electrode, an insulating layer, a source electrode, a drain electrode, and a channel layer. The insulating layer is located on the surface of the gate electrode, and the channel layer is located on the surface of the insulating layer away from the gate electrode. The source electrode and the drain electrode are spaced apart from each on the surface of the channel layer away from the insulating layer. The source electrode and the drain electrode are one-dimensional structures. The present application further provides a method for making the field effect transistor and a method for measuring an interface resistance of the field effect transistor.

IPC Classes  ?

  • G01R 31/26 - Testing of individual semiconductor devices

43.

LIGHTING ADJUSTMENT SYSTEM AND METHOD

      
Application Number 18015674
Status Pending
Filing Date 2021-03-18
First Publication Date 2024-02-01
Owner TSINGHUA UNIVERSITY (China)
Inventor
  • Lin, Borong
  • Zhang, Qinyi
  • Zeng, Yunyi
  • Yu, Juan

Abstract

The present disclosure relates to the field of lighting adjustment technologies, and in particular to a lighting adjustment system and method. The system includes: a light sensor, a personnel controller, a central processing unit, and a lighting device, where the light sensor, the personnel controller, and the lighting device are all wirelessly connected to the central processing unit; the light sensor is arranged at a preset monitoring point, and configured to receive monitoring information at the monitoring point; the personnel controller is configured to obtain a lighting environment creation selection of control personnel; the central processing unit is configured to regulate beam angle, color temperature, and illuminance of the lighting device in real time based on the received monitoring information and the lighting environment creation selection; and the lighting device is arranged at the monitoring point preset indoors.

IPC Classes  ?

  • H05B 45/12 - Controlling the intensity of the light using optical feedback
  • H05B 45/325 - Pulse-width modulation [PWM]
  • H05B 47/19 - Controlling the light source by remote control via wireless transmission
  • H05B 47/17 - Operational modes, e.g. switching from manual to automatic mode or prohibiting specific operations
  • F21V 14/02 - Controlling the distribution of the light emitted by adjustment of elements by movement of light sources

44.

Method and Apparatus for Weight-Sharing Neural Network with Stochastic Architectures

      
Application Number 18249162
Status Pending
Filing Date 2020-10-15
First Publication Date 2024-02-01
Owner
  • Robert Bosch GmbH (Germany)
  • Tsinghua University (China)
Inventor
  • Zhu, Jun
  • Deng, Zhijie
  • Dong, Yinpeng
  • Zhang, Chao
  • Yang, Kevin

Abstract

A method for training a weight-sharing neural network with stochastic architectures is disclosed. The method includes (i) selecting a mini-batch from a plurality of mini-batches, a training data set for a task being grouped into the plurality of mini-batches and each of the plurality of mini-batches comprising a plurality of instances: (ii) stochastically selecting a plurality of network architectures of the neural network for the selected mini-batch; (iii) obtaining a loss for each instance of the selected mini-batch by applying the instance to one of the plurality of network architectures; and (iv) updating shared weights of the neural network based on the loss for each instance of the selected mini-batch.

IPC Classes  ?

45.

DETECTION METHOD, APPARATUS AND SYSTEM

      
Application Number 18266507
Status Pending
Filing Date 2021-11-25
First Publication Date 2024-01-25
Owner
  • Nuctech Company Limited (China)
  • Tsinghua University (China)
Inventor
  • Zeng, Zhi
  • Li, Jianmin
  • Ruan, Ming
  • Deng, Yanli
  • Zhu, Guoping
  • Li, Junli

Abstract

Embodiments of the present application provide a detection method. The detection method includes: acquiring information of at least two first positions through which a particle passes before penetrating an object under detection, and information of at least two second positions through which the particle passes after penetrating the object under detection, wherein the object under detection is a metal product; reconstructing, based on the information of the at least two first positions, a first track before the particle penetrates the object under detection; reconstructing, based on the information of the at least two second positions, a second track after the particle penetrates the object under detection; processing the first track and the second track to obtain feature information of the object under detection; and determining, according to the feature information and preset feature information of an object of a target type, a detection result of the object under detection.

IPC Classes  ?

  • G01N 23/10 - Investigating or analysing materials by the use of wave or particle radiation, e.g. X-rays or neutrons, not covered by groups , or by transmitting the radiation through the material and measuring the absorption the material being confined in a container, e.g. in luggage X-ray scanners
  • G01N 23/20025 - Sample holders or supports therefor

46.

RECONSTRUCTION METHOD AND DEVICE FOR SPECTRAL IMAGE

      
Application Number 17989527
Status Pending
Filing Date 2022-11-17
First Publication Date 2024-01-25
Owner
  • TSINGHUA UNIVERSITY (China)
  • BEIJING SEETRUM TECHNOLOGY CO., LTD. (China)
Inventor
  • Cui, Kaiyu
  • Yang, Jiawei
  • Huang, Yidong
  • Zhang, Wei
  • Feng, Xue
  • Liu, Fang

Abstract

A reconstruction method for spectral image includes: obtaining a measurement image of an imaging object, and reconstructing and obtaining a spectral image of the imaging object according to the measurement image and a pre-calibrated sensing matrix. The spectral image includes spectral information at different position points of the imaging object. Through the method, defects of the time-consuming spectral image reconstruction method and the low resolution of the obtained spectral image in the related art can be overcame and the spectral image of the target imaging object can be obtained by reconstructing quickly and the obtained spectral image has high spatial resolution and no mosaic.

IPC Classes  ?

  • G01J 3/28 - Investigating the spectrum
  • G06T 1/20 - Processor architectures; Processor configuration, e.g. pipelining
  • G06T 5/00 - Image enhancement or restoration
  • G06T 7/70 - Determining position or orientation of objects or cameras

47.

MODULARIZED PARAMETRIC VISUAL PROGRAM INDUCTION ALGORITHM, DEVICE, MEDIUM AND PRODUCT

      
Application Number 18197746
Status Pending
Filing Date 2023-05-16
First Publication Date 2024-01-18
Owner Tsinghua University (China)
Inventor
  • Zhu, Wenwu
  • Wang, Xin
  • Duan, Xuguang

Abstract

A modularized parametric visual program induction algorithm, a device, a medium and a product are provided. An optimized modularized parametric model is obtained by constructing a modularized parametric model and training with the cooperation of a hierarchical Monto-Carlo Tree-Search algorithm, data to be processed is input into the optimized modularized parametric model and processed in conjunction with the hierarchical Monto-Carlo Tree-Search algorithm, and a result program expression is output. The modularized parametric visual program induction algorithm is applicable to complex visual scenes; and model training data of the modularized parametric model is augmented in a training stage in conjunction with the hierarchical Monto-Carlo Tree-Search algorithm.

IPC Classes  ?

48.

CLUSTERING-BASED ADAPTIVE ROBUST COLLABORATIVE LEARNING METHOD AND APPARATUS

      
Application Number 18353993
Status Pending
Filing Date 2023-07-18
First Publication Date 2024-01-18
Owner TSINGHUA UNIVERSITY (China)
Inventor
  • Xu, Ke
  • Zhao, Yi
  • Chen, Jiahua

Abstract

A clustering-based adaptive robust collaborative learning method includes: local models uploaded by a plurality of collaborative terminals and at least part of training data of the plurality of the collaborative terminals for training the local models are obtained, a trusted global model is trained based on the at least part of the training data; by taking trusted global model parameters as a trust guidance, a clustering operation is performed on each parameter dimension of the local models based on a predetermined optimal clustering algorithm respectively; and weights of the trusted local model parameters are determined based on similarities between the trusted global model parameters and the trusted local model parameters, to update the trusted global model parameters.

IPC Classes  ?

  • G06F 21/55 - Detecting local intrusion or implementing counter-measures
  • G06F 21/57 - Certifying or maintaining trusted computer platforms, e.g. secure boots or power-downs, version controls, system software checks, secure updates or assessing vulnerabilities

49.

SLOPE DETECTION APPARATUS AND METHOD BASED ON DISTRIBUTED OPTICAL FIBER SENSING

      
Application Number 18105538
Status Pending
Filing Date 2023-02-03
First Publication Date 2024-01-11
Owner Tsinghua University (China)
Inventor
  • Song, Danqing
  • Liu, Xiaoli
  • Yan, Wenfa
  • Chen, Guanfu
  • Zhang, Yufang
  • Li, Jian

Abstract

This application discloses a slope detection apparatus and method based on distributed optical fiber sensing. The apparatus includes: optical fiber measuring units arranged inside a slope and configured to measure acceleration time sequences of a plurality of state parameters of the slope; a demodulator, where the demodulator is connected to the optical fiber measuring units and configured to receive the acceleration time sequences of the slope; and a terminal device, where the terminal device is connected to the demodulator and configured to perform multi-domain coupling analysis on the acceleration time sequences so as to generate a feature cloud map of the slope, perform sub-item detection on slope stability state based on the feature cloud map and preset multi-domain feature parameter indexes so as to obtain a sub-item detection result of the state of the slope.

IPC Classes  ?

  • G01H 9/00 - Measuring mechanical vibrations or ultrasonic, sonic or infrasonic waves by using radiation-sensitive means, e.g. optical means
  • G01B 11/16 - Measuring arrangements characterised by the use of optical techniques for measuring the deformation in a solid, e.g. optical strain gauge
  • G01L 1/24 - Measuring force or stress, in general by measuring variations of optical properties of material when it is stressed, e.g. by photoelastic stress analysis

50.

Method and apparatus for semantic analysis on confrontation scenario based on target-attribute-relation

      
Application Number 18238545
Grant Number 11915161
Status In Force
Filing Date 2023-08-28
First Publication Date 2024-01-11
Grant Date 2024-02-27
Owner
  • TSINGHUA UNIVERSITY (China)
  • NANTONG ADVANCED COMMUNICATION TECHNOLOGY RESEARCH INSTITUTE CO., LTD. (China)
Inventor
  • Duan, Yiping
  • Tao, Xiaoming
  • Li, Mingzhe
  • Zhao, Ziqi

Abstract

A method includes: pre-processing initial data of an acquired to-be-analyzed confrontation scenario, to obtain triplet data marked in a graph data structure, inputting the triplet data into a pre-trained analyzing model, to determine a result of analysis on semantic information of the to-be-analyzed confrontation scenario; wherein the analyzing model includes a plurality of operator networks that are provided with execution priorities, wherein the plurality of operator networks are configured for analyzing relations of different types; and the processing result of any one of the operator networks includes: in the relation type corresponding to the operator network, respective true relations of all of the node pairs, and confidences and descriptive values of the true relations; and according to the graph data structure that is updated by using the processing results of all of the operator networks, characterizing the result of analysis on the semantic information of the to-be-analyzed confrontation scenario.

IPC Classes  ?

  • G06N 7/01 - Probabilistic graphical models, e.g. probabilistic networks

51.

ARCHITECTURE SEARCH METHOD AND APPARATUS FOR LARGE-SCALE GRAPH, AND DEVICE AND STORAGE MEDIUM

      
Application Number 18093826
Status Pending
Filing Date 2023-01-06
First Publication Date 2024-01-11
Owner Tsinghua University (China)
Inventor
  • Zhu, Wenwu
  • Wang, Xin
  • Guan, Chaoyu
  • Chen, Hong

Abstract

An architecture search method and an architecture search apparatus for a large-scale graph, and a device and a storage medium are provided. The method includes: obtaining a subgraph of a large-scale graph by performing local sampling on the large-scale graph; sampling a plurality of neural network architectures in a pre-constructed super network according to a pre-customized importance sampling strategy; obtaining a plurality of trained neural network architectures by training, according to a peer learning method, the plurality of neural network architectures with the subgraph; obtaining a trained super network by iteratively executing the subgraph sampling, the architecture sampling, and the architecture training; and selecting an optimal architecture in the trained super network to process the large-scale graph to obtain a graph processing result.

IPC Classes  ?

52.

COMPUTE-IN-MEMORY DEVICES, NEURAL NETWORK ACCELERATORS, AND ELECTRONIC DEVICES

      
Application Number 18342917
Status Pending
Filing Date 2023-06-28
First Publication Date 2024-01-04
Owner Tsinghua University (China)
Inventor
  • Li, Xueqing
  • Yin, Guodong
  • Chen, Yiming
  • Cheong, Lingan
  • Liao, Tianyu
  • Tang, Wenjun
  • Lee, Mingyen
  • Du, Xirui
  • Chen, Zhonghao
  • Zhou, Mufeng
  • Wang, Chen
  • Yang, Zekun
  • Liu, Yongpan
  • Yang, Huazhong

Abstract

The disclosed apparatus comprises a computing array comprising a plurality of computing modules, wherein each computing module comprises at least one storage cell, a reset switch, and a capacitor; the storage cell comprises at least one storage switch, and the storage switch comprises a storage control terminal, a storage detection terminal, and a storage terminal, the storage control terminal to receive a storage state voltage to adjust the impedance characteristic between the storage detection terminal and the storage terminal; the reset switch comprises a reset control terminal, a reset detection terminal, and a reset terminal, the reset control terminal to receive a reset voltage and the reset terminal is used to receive a reset state voltage. The disclosed apparatus also comprises a control module, which is used to control the computing array to perform at least one of a store operation, a read operation, and a compute operation.

IPC Classes  ?

  • G11C 11/4072 - Circuits for initialization, powering up or down, clearing memory or presetting
  • G11C 11/408 - Address circuits
  • G11C 11/4094 - Bit-line management or control circuits

53.

SOFTWARE PROTECTION METHOD AND APPARATUS, ELECTRONIC DEVICE, AND STORAGE MEDIUM

      
Application Number 18467252
Status Pending
Filing Date 2023-09-14
First Publication Date 2024-01-04
Owner Tsinghua University (China)
Inventor
  • Zhang, Chao
  • Tan, Wende
  • Li, Yuan
  • Liu, Ying
  • Wu, Jianping

Abstract

The present disclosure provides a software protection method and apparatus, an electronic device and a storage medium. By identifying the sensitive data in the software source code and determining the point of use of the sensitive data; setting the sensitive data in the read-only section of the compilation product of the software source code so that the sensitive data is stored in the read-only area when the software is running; inserting the check code into the above point of use of the sensitive data, where the check code is used to check whether the sensitive data read is in the read-only area while the software is running, and determine whether to continue running the software according to the check result, embodiments of the present disclosure realize the integrity verification of the sensitive data, and thereby prevent the sensitive data from being corrupted with low performance overheads.

IPC Classes  ?

  • G06F 21/12 - Protecting executable software
  • G06F 21/62 - Protecting access to data via a platform, e.g. using keys or access control rules

54.

Low-temperature resistant perfluoropolyether-based magnetic liquid and preparation method thereof

      
Application Number 18337796
Grant Number 11869694
Status In Force
Filing Date 2023-06-20
First Publication Date 2024-01-04
Grant Date 2024-01-09
Owner Tsinghua University (China)
Inventor
  • Li, Decai
  • Nie, Shilin

Abstract

A preparation method of a perfluoropolyether-based magnetic liquid includes dispersing magnetic nanoparticles coated with graphene oxide into a solution of N,N-dimethylformamide to obtain solution A; dispersing a surfactant into dichloromethane, and adding triethylamine as a cosolvent to obtain solution B; mixing the solution A and the solution B uniformly, heating them under reflux and stirring them for a modification reaction; and after the modification reaction is completed, washing and drying a reaction product to obtain the modified magnetic nanoparticles coated with the graphene oxide; dispersing the modified magnetic nanoparticles coated with the graphene oxide into a base carrier liquid to prepare the perfluoropolyether-based magnetic liquid. The surfactant is a perfluoroalkylamine. The base carrier liquid is a perfluoropolyether oil. The modification reaction is performed at a temperature of 50 to 120° C. for a time period of 20 to 50 hours.

IPC Classes  ?

  • H01F 1/44 - Magnets or magnetic bodies characterised by the magnetic materials therefor; Selection of materials for their magnetic properties of magnetic liquids, e.g. ferrofluids

55.

ELECTRON PTYCHOGRAPHY METHOD AND APPARATUS FOR AUTOMATICALLY CORRECTING MISTILT OF ZONE AXIS OF SAMPLE

      
Application Number 18244321
Status Pending
Filing Date 2023-09-11
First Publication Date 2023-12-28
Owner TSINGHUA UNIVERSITY (China)
Inventor
  • Yu, Rong
  • Sha, Hao-Zhi
  • Cui, Ji-Zhe

Abstract

An electron ptychography method and an electron ptychography apparatus for automatically correcting a mistilt of a zone axis of a sample. The method includes: acquiring a diffraction pattern of each scan point of the sample by scanning the sample through using an electron beam; initializing an object function and an electron beam function, constructing a forward propagation model according to a propagation function between sample slices, and calculating a loss function to be a difference between a calculated diffraction pattern and the acquired diffraction pattern, where the calculated diffraction pattern is obtained from the forward propagation model and parameters to be optimized; calculating gradients of the loss function with respect to parameters to be optimized respectively, and optimizing the parameters to be optimized according to the gradients; executing the calculating the loss function of the forward propagation model, the calculating the gradients of the loss function with respect to the parameters to be optimized respectively, and the optimizing the parameters to be optimized according to the gradients, iteratively, till a termination condition for iterations is satisfied; and outputting the optimized parameters.

IPC Classes  ?

56.

SENSITIVE DATA READING METHOD AND APPARATUS, ELECTRONIC DEVICE, AND STORAGE MEDIUM

      
Application Number 18465430
Status Pending
Filing Date 2023-09-12
First Publication Date 2023-12-28
Owner TSINGHUA UNIVERSITY (China)
Inventor
  • Zhang, Chao
  • Tan, Wende
  • Li, Yuan
  • Liu, Ying
  • Wu, Jianping

Abstract

The present disclosure provides a sensitive data reading method and apparatus, an electronic device, and a storage medium. By initiating a read request for sensitive data stored in a memory page or a memory region, determining a read-only permission result in response to the read request, where the read-only permission result indicates whether the memory page or the memory region is provided with a read-only permission, and reading the sensitive data if the read-only permission result indicates that the memory page or the memory region is provided with the read-only permission, that is, by verifying the read-only permission of the memory page or the memory region storing the sensitive data, embodiments of the present disclosure enable a fast lightweight verification of the integrity of the sensitive data, thereby ensuring that sensitive operations are not hijacked.

IPC Classes  ?

  • G06F 12/14 - Protection against unauthorised use of memory

57.

METHOD FOR GENERATING TRAFFIC DEMAND DATA OF DATA CENTER NETWORK

      
Application Number 18309222
Status Pending
Filing Date 2023-04-28
First Publication Date 2023-12-28
Owner TSINGHUA UNIVERSITY (China)
Inventor
  • Cui, Yong
  • Liu, Zhiwen
  • Wang, Mowei

Abstract

A method for generating traffic demand data of a data center network includes: acquiring traffic demand samples each including a source address, a destination address, a flow interval, and a flow size; acquiring a first interval number by performing equal-frequency binning discretization processing according to the flow interval and acquiring a second interval number by performing equal-frequency binning discretization processing according to the flow size; determining a traffic demand subset according to the source address and the destination address, and acquiring a first parameter matrix and a second parameter matrix by training a latent Dirichlet allocation probability topic model according to the traffic demand subset; and generating the traffic demand data according to the first interval number, the second interval number, the first parameter matrix, and the second parameter matrix.

IPC Classes  ?

58.

ORGANIC ELECTROLUMINESCENT DEVICE AND DISPLAY APPARATUS

      
Application Number 18466253
Status Pending
Filing Date 2023-09-13
First Publication Date 2023-12-28
Owner
  • KunShan Go-Visionox Opto-Electronics Co., Ltd (China)
  • Tsinghua University (China)
Inventor
  • Li, Guomeng
  • Duan, Lian
  • Zhang, Yuewei
  • Zhang, Dongdong
  • Cai, Minghan
  • Li, Baoyu
  • Li, Mengzhen

Abstract

An organic electroluminescent device and a display apparatus. The organic electroluminescent device includes a light-emitting layer, including a triplet-triplet annihilation type host and a fluorescent dye, where the fluorescent dye has a structure represented by the following Formula (1) or Formula (2). When the fluorescent dye in the light-emitting layer of the organic electroluminescent device combines with the triplet-triplet annihilation type host, the voltage of the device can be reduced, and the luminescence efficiency of the device can be improved. An organic electroluminescent device and a display apparatus. The organic electroluminescent device includes a light-emitting layer, including a triplet-triplet annihilation type host and a fluorescent dye, where the fluorescent dye has a structure represented by the following Formula (1) or Formula (2). When the fluorescent dye in the light-emitting layer of the organic electroluminescent device combines with the triplet-triplet annihilation type host, the voltage of the device can be reduced, and the luminescence efficiency of the device can be improved.

IPC Classes  ?

  • H10K 85/60 - Organic compounds having low molecular weight
  • H10K 85/40 - Organosilicon compounds, e.g. TIPS pentacene
  • H10K 85/20 - Carbon compounds, e.g. carbon nanotubes or fullerenes
  • C09K 11/06 - Luminescent, e.g. electroluminescent, chemiluminescent, materials containing organic luminescent materials
  • C09K 11/02 - Use of particular materials as binders, particle coatings or suspension media therefor

59.

SPECTRAL CHIP STRUCTURE DESIGN METHOD AND DEVICE FOR APPLICATION-SPECIFIC SPECTRAL LIBRARY

      
Application Number 18079706
Status Pending
Filing Date 2022-12-12
First Publication Date 2023-12-21
Owner
  • TSINGHUA UNIVERSITY (China)
  • BEIJING SEETRUM TECHNOLOGY CO., LTD. (China)
Inventor
  • Cui, Kaiyu
  • Zhu, Hongbo
  • Huang, Yidong
  • Zhang, Wei
  • Feng, Xue
  • Liu, Fang

Abstract

A spectral chip structure design method includes: obtaining an application-specific spectral library, and determining a spectral principal component based on the application-specific spectral library; performing non-negative processing on the spectral principal component to obtain a non-negative spectral principal component; and determining transmission spectra of the spectral chip structure based on the non-negative spectral principal component. By summarizing spectral features of the application-specific spectral library through the spectral principal component, a quantitative evaluation for the spectral library is realized and then by designing the spectral chip structure on this basis, a targeted quantitative design on the application-specific spectral library can be realized and the accuracy of reconstructing spectra by the spectral chip can be improve

IPC Classes  ?

60.

ORGANIC ELECTROLUMINESCENT DEVICE AND DISPLAY DEVICE

      
Application Number 18461717
Status Pending
Filing Date 2023-09-06
First Publication Date 2023-12-21
Owner
  • KunShan Go-Visionox Opto-Electronics Co., Ltd (China)
  • TSINGHUA UNIVERSITY (China)
Inventor
  • Cai, Minghan
  • Duan, Lian
  • Li, Guomeng
  • Li, Mengzhen
  • Wang, Hongyu
  • Cao, Fangyi

Abstract

An organic electroluminescent device and a display device. The organic electroluminescent device includes a first functional layer, a light-emitting layer, and a second functional layer that are sequentially stacked. The light-emitting layer includes a host material, a sensitizer, and a dye; the light-emitting layer includes N sections in a stacking direction, with a first section being in contact with the first functional layer and a Nth section being in contact with the second functional layer, N>1; where among the N sections, a section with the highest dye content is the highest critical section, where D1

IPC Classes  ?

  • H10K 50/12 - OLEDs or polymer light-emitting diodes [PLED] characterised by the electroluminescent [EL] layers comprising dopants
  • H10K 85/60 - Organic compounds having low molecular weight
  • C09K 11/06 - Luminescent, e.g. electroluminescent, chemiluminescent, materials containing organic luminescent materials

61.

EQUIPMENT FOR SEALING-PERFORMANCE TEST

      
Application Number 17812169
Status Pending
Filing Date 2022-07-12
First Publication Date 2023-12-21
Owner Tsinghua University (China)
Inventor
  • Guo, Fei
  • Huang, Yijie
  • Xiang, Chong
  • Cheng, Ganlin
  • Chen, Shengshan
  • Jia, Xiaohong
  • Wang, Yuming

Abstract

An equipment for sealing-performance test includes a housing, a fixed mechanism and a detection part; the housing is configured to accommodate the fixed mechanism, and an abutting part is formed in the housing and is configured to abut against an outer side of a sealing ring; the fixed mechanism includes a central rod, a plurality of fixed blocks and a driving assembly, the central rod extends along a direction parallel to the axial direction of the central rod, the plurality of fixed blocks are evenly disposed along a circumferential direction of the central rod, and the driving assembly is configured to drive the plurality of fixed blocks to move along a radial direction of the central rod; a test cavity and a detection cavity are formed in the housing, the test cavity is filled with a test fluid, and is separated from the detection cavity by the sealing ring.

IPC Classes  ?

  • G01M 13/005 - Sealing rings
  • G01M 3/04 - Investigating fluid tightness of structures by using fluid or vacuum by detecting the presence of fluid at the leakage point

62.

Adsorption Parallel Machining Robot

      
Application Number 17610966
Status Pending
Filing Date 2021-02-19
First Publication Date 2023-12-14
Owner TSINGHUA UNIVERSITY (China)
Inventor
  • Xie, Fugui
  • Liu, Xinjun
  • Ma, Zijian

Abstract

The application discloses an adsorption parallel machining robot, including a machining module and an adsorption module. The machining module includes a fixed platform, a movable platform, multiple branch chains and end effector; multi-degree-of-freedom motion is achieved through linear motion of the multiple branch chains. The adsorption module includes multiple fixed adsorption branch chains, each of which includes a connecting bracket, an adsorption device, an adsorption locking device, an omnidirectional wheel and a driving device, and is used for achieving adsorption and movement of the robot on the surface of a workpiece. Besides the locking function, the locking device additionally has a cleaning function, and residual cutting chips on the robot can be removed. The robot has the beneficial effects of flexible local posture adjustment, high processing efficiency, wide processing range, easy disassembly and assembly, good portability and low energy consumption, which can meet the demand for mobile processing of large components.

IPC Classes  ?

  • B25J 9/00 - Programme-controlled manipulators
  • B25J 11/00 - Manipulators not otherwise provided for

63.

IMAGE GUIDED RADIOTHERAPY APPARATUS AND CONTROL METHOD THEREFOR

      
Application Number 18206070
Status Pending
Filing Date 2023-06-05
First Publication Date 2023-12-14
Owner
  • Cancer Hospital, Chinese Acad. of Medical Sciences (China)
  • Shaanxi Huaming Putai Medical Equip. Co. Ltd. (China)
  • Tsinghua University (China)
  • Beijing Institute of Technology (China)
  • Beihang University (China)
  • Beijing Patesi Technology Co., Ltd. (China)
  • Huiying Medical Technology (Beijing) Co., Ltd. (China)
  • Beijing Information Science & Tech. University (China)
Inventor
  • Dai, Jianrong
  • Niu, Chuanmeng
  • Li, Yanfei
  • Zha, Hao
  • Ma, Pan
  • Wang, Shirong
  • Zhou, Fugen
  • Li, Hongda
  • Li, Minghui
  • Lv, Guozheng
  • Chai, Xiangfei
  • Peng, Baoying
  • Zhang, Jinyan

Abstract

An image guided radiotherapy apparatus and a control method are provided. According to a specific embodiment, the radiotherapy apparatus includes: a treatment unit, which includes a treatment head for generating radiation beam for radiotherapy; an imaging unit for imaging a target area of a patient, wherein the imaging unit is integrated mounted with the treatment head. The radiotherapy apparatus of the present invention can be applicable to both extracorporeal and intraoperative radiotherapy, and has a high radiotherapy accuracy.

IPC Classes  ?

  • A61N 5/10 - X-ray therapy; Gamma-ray therapy; Particle-irradiation therapy

64.

METHOD OF MAKING LITHIUM-ION BATTERY ANODE

      
Application Number 17973631
Status Pending
Filing Date 2022-10-26
First Publication Date 2023-12-14
Owner
  • Tsinghua University (China)
  • HON HAI PRECISION INDUSTRY CO., LTD. (Taiwan, Province of China)
Inventor
  • Hong, Zi-Xin
  • Fang, Zhen-Han
  • Wang, Jia-Ping
  • Fan, Shou-Shan

Abstract

A method of making lithium-ion battery anode comprising step (S1)-step (S3). step (S1): providing a nano-silicon material, and coating a positively charged carbonizable polymer on a surface of the nano-silicon material, to obtain a nano-silicon coated with the positively charged carbonizable polymer. Step (S2): adding CNTs and the nano-silicon coated with the positively charged carbonizable polymer to a solvent; and performing an ultrasonic dispersion to obtain a dispersion. And step (S3): vacuum filtering the dispersion, to obtain a composite film of the CNTs and the nano-silicon coated with positively charged carbonizable polymer.

IPC Classes  ?

  • H01M 4/38 - Selection of substances as active materials, active masses, active liquids of elements or alloys
  • H01M 4/62 - Selection of inactive substances as ingredients for active masses, e.g. binders, fillers
  • H01M 4/36 - Selection of substances as active materials, active masses, active liquids
  • H01M 4/60 - Selection of substances as active materials, active masses, active liquids of organic compounds
  • H01M 4/04 - Processes of manufacture in general

65.

LITHIUM-ION BATTERY ANODE

      
Application Number 17972752
Status Pending
Filing Date 2022-10-25
First Publication Date 2023-12-14
Owner
  • Tsinghua University (China)
  • HON HAI PRECISION INDUSTRY CO., LTD. (Taiwan, Province of China)
Inventor
  • Hong, Zi-Xin
  • Fang, Zhen-Han
  • Wang, Jia-Ping
  • Fan, Shou-Shan

Abstract

A lithium-ion battery anode is provided. The lithium-ion battery anode comprises a carbon nanotube three-dimensional network structure formed by a plurality of carbon nanotubes intertwined with each other. A plurality of nano-silicon particles coated with amorphous carbon, dispersed in the carbon nanotube three-dimensional network structure, and adhered to surfaces of the plurality of carbon nanotubes. The amorphous carbon is obtained by calcining a positively charged carbonizable polymer. And a carbon nanotube functional layer located on two opposite surfaces of the carbon nanotube three-dimensional network structure, to make the carbon nanotube three-dimensional network structure located between two carbon nanotube functional layers. The carbon nanotube functional layer comprises at least two super-aligned carbon nanotube films stacked and crossed with each other.

IPC Classes  ?

  • H01M 4/36 - Selection of substances as active materials, active masses, active liquids
  • H01M 4/133 - Electrodes based on carbonaceous material, e.g. graphite-intercalation compounds or CFx
  • H01M 4/134 - Electrodes based on metals, Si or alloys
  • H01M 4/38 - Selection of substances as active materials, active masses, active liquids of elements or alloys
  • H01M 4/587 - Carbonaceous material, e.g. graphite-intercalation compounds or CFx for inserting or intercalating light metals
  • C01B 32/158 - Carbon nanotubes

66.

METHOD AND SYSTEM FOR PREPARING UREA BY COUPLING DENITRATION WITH ELECTROCATALYTIC REDUCTION

      
Application Number 18035625
Status Pending
Filing Date 2022-01-07
First Publication Date 2023-12-07
Owner Tsinghua University (China)
Inventor
  • Peng, Yue
  • Li, Junhua
  • Chen, Zhen
  • Yin, Haibo
  • Wang, Rong

Abstract

The present disclosure relates to a method and a system for preparing urea by coupling denitration with electrocatalytic reduction. Specifically, the method of the present disclosure comprises: introducing an absorption solution containing nitrite and nitrate, which is generated by subjecting flue gas containing nitric oxide to a denitration step, into a separation step to separate the nitrite and the nitrate, thereby obtaining a solution rich in the nitrite and the nitrate; and introducing the solution rich in the nitrite and the nitrate generated in the separation step into an electrocatalysis step, and carrying out the electrocatalytic reduction in the presence of carbon dioxide or carbonate ions to generate a urea solution. The system of the present disclosure comprises: a denitration device, a separation device connected to the denitration device, and an electrocatalytic device connected to the separation device. The method and system of the present disclosure can be used for the deep removal of nitrogen oxides from industrial flue gas at a low temperature, and can achieve the recycling of nitrogen.

IPC Classes  ?

67.

Method and Apparatus for Neural Network Based on Energy-Based Latent Variable Models

      
Application Number 18248917
Status Pending
Filing Date 2020-10-15
First Publication Date 2023-12-07
Owner
  • Robert Bosch GmbH (Germany)
  • Tsinghua University (China)
Inventor
  • Zhu, Jun
  • Bao, Fan
  • Li, Chongxuan
  • Xu, Kun
  • Su, Hang
  • Lu, Siliang

Abstract

A method for training neural networks based on energy-based latent variable models (EBLVMs) includes bi-level optimizations based on a score matching objective. The lower-level optimizes a variational posterior distribution of the latent variables to approximate the true posterior distribution of the EBLVM, and the higher-level optimizes the neural network parameters based on a modified SM objective as a function of the variational posterior distribution. The method is used to train neural networks based on EBLVMs with nonstructural assumptions.

IPC Classes  ?

68.

SYSTEM AND METHOD OF PERFORMING SECURITY INSPECTION OF HUMAN BODY BASED ON MILLIMETER-WAVE

      
Application Number 18034349
Status Pending
Filing Date 2021-09-30
First Publication Date 2023-11-30
Owner
  • Tsinghua University (China)
  • NUCTECH COMPANY LIMITED (China)
Inventor
  • Chen, Zhiqiang
  • Zhao, Ziran
  • Jin, Yingkang
  • He, Xiaoyi
  • Zhao, Mengjiao
  • Zheng, Zhimin
  • Zhang, Yihai
  • Li, Yaning
  • Feng, Xiaoxiao

Abstract

A method and a system of performing security inspection of human body based on millimeter-wave. The method includes: displaying, by a first display device, information related to a designated posture to a person to be inspected before the person enters an inspection channel defined by a millimeter-wave human body security inspection instrument, the designated posture being expected to be taken by the person when scanning the person with the instrument; guiding the person to enter the inspection channel and stand at a designated standing position within the inspection channel in a standing posture substantially complying with the designated posture; scanning, by the instrument, the person, to obtain millimeter-wave scanning data; and performing, by a workstation, a reconstruction of millimeter-wave scanning image of the person, a confirmation for the standing posture of the person, and a recognition of a suspected item of the person, based on the millimeter-wave scanning data.

IPC Classes  ?

  • G01V 8/00 - Prospecting or detecting by optical means
  • G01V 8/10 - Detecting, e.g. by using light barriers
  • G01S 13/88 - Radar or analogous systems, specially adapted for specific applications
  • G01S 13/89 - Radar or analogous systems, specially adapted for specific applications for mapping or imaging

69.

Unsupervised reinforcement learning method and apparatus based on Wasserstein distance

      
Application Number 18124559
Grant Number 11823062
Status In Force
Filing Date 2023-03-21
First Publication Date 2023-11-21
Grant Date 2023-11-21
Owner TSINGHUA UNIVERSITY (China)
Inventor
  • Ji, Xiangyang
  • He, Shuncheng
  • Jiang, Yuhang

Abstract

The present disclosure discloses an unsupervised reinforcement learning method and apparatus based on Wasserstein distance. The method includes: obtaining a state distribution in a trajectory obtained with guidance of a current policy of an agent; calculating a Wasserstein distance between the state distribution and a state distribution in a trajectory obtained with another historical policy, and calculating a pseudo reward of the agent based on the Wasserstein distance, replacing a reward fed back from an environment in a target reinforcement learning framework with the pseudo reward, and guiding the current policy of the agent to keep a large distance from the other historical policy. The method uses Wasserstein distance to encourage an algorithm in an unsupervised reinforcement learning framework to obtain diverse policies and skills through training.

IPC Classes  ?

70.

HETERODYNE GRATING INTERFEROMETRY SYSTEM BASED ON SECONDARY DIFFRACTION

      
Application Number 18246670
Status Pending
Filing Date 2021-09-14
First Publication Date 2023-11-16
Owner
  • TSINGHUA UNIVERSITY (China)
  • BEIJING U-PRECISION TECH CO., LTD. (China)
Inventor
  • Zhu, Yu
  • Wang, Leijie
  • Guo, Ziwen
  • Zhang, Ming
  • Cheng, Rong
  • Ye, Weinan
  • Cheng, Zhaokui

Abstract

Disclosed is a heterodyne grating interferometry system based on secondary diffraction, including a single-frequency laser, an input optical fiber, an acousto-optic modulator, a reading head, and a measurement grating, an output optical fiber, a photoelectric conversion unit and an electronic signal processing unit, wherein the single-frequency laser emits a single-frequency laser, which enters the acousto-optic modulator through the input optical fiber, and is divided into a reference light and measurement light to be input to the reading head, wherein the reading head and the measurement grating convert the reference light and measurement light into a reference interference optical signal and a measurement interference optical signal and send them to the photoelectric conversion unit through the output optical fiber and wherein the photoelectric conversion unit converts the measurement interference optical signal and the reference interference optical signal into a measurement interference electrical signal and a reference interference electrical signal.

IPC Classes  ?

  • G01B 9/02002 - Interferometers characterised by controlling or generating intrinsic radiation properties using two or more frequencies

71.

MATERIAL TESTING MACHINE

      
Application Number 17868741
Status Pending
Filing Date 2022-07-19
First Publication Date 2023-11-16
Owner Tsinghua University (China)
Inventor
  • Guo, Fei
  • Cheng, Ganlin
  • Chen, Bingzhe
  • Xiang, Chong
  • Huang, Yijie
  • Chen, Shengshan
  • Li, Yongjian
  • Jia, Xiaohong
  • Wang, Yuming

Abstract

A material testing machine, including a machine body, a first fixing element, a second fixing element and a detection assembly; the first and the second fixing elements are mounted to the machine body, the first fixing element is configured to mount a first testing element, and the second fixing element is configured to mount a second testing element; in a first state, the first and the second testing elements are in sliding contact; in a second state, the first fixing element drives the first testing element to collide with the second testing element; the detection assembly is configured to detect a target parameter, and in the first state, the target parameter includes a friction force and/or, a friction sound between the first and the second testing elements; and in the second state, the target parameter includes a collision force received by the first or the second testing element.

IPC Classes  ?

  • G01N 3/04 - Chucks
  • G01N 3/40 - Investigating hardness or rebound hardness
  • G01N 3/56 - Investigating resistance to wear or abrasion
  • G01N 3/30 - Investigating strength properties of solid materials by application of mechanical stress by applying a single impulsive force

72.

VERTICAL MOTION PROTECTION METHOD AND DEVICE BASED ON DUAL-STAGE MOTION SYSTEM OF PHOTOLITHOGRAPHY MACHINE

      
Application Number 18042991
Status Pending
Filing Date 2021-03-04
First Publication Date 2023-11-09
Owner TSINGHUA UNIVERSITY (China)
Inventor
  • Yang, Kaiming
  • Cheng, Rong
  • Zhu, Yu
  • Zhang, Ming
  • Lei, Sheng
  • Liu, Tao
  • Lu, Sen
  • Li, Xin

Abstract

Disclosed are a vertical motion protection method and device based on a dual-stage motion system of a photolithography machine. The method comprises: according to a distance between measured points and reference points of the eddy current sensor and coordinates of the reference points of the eddy current sensor, calculating coordinates of the measured points on a lower surface of the micro-motion stage respectively; calculating a point normal form equation of the micro-motion stage at the current time using measured coordinates of the measured points on the micro-motion stage, then substituting X and Y coordinates of the measured points on the translated micro-motion stage to determine a maximum height of the micro-motion stage at the current time; and comparing the maximum height with a height threshold, if the maximum height exceeds the height threshold, shutting down for protection, or else continuing to operate the system.

IPC Classes  ?

  • G03F 7/00 - Photomechanical, e.g. photolithographic, production of textured or patterned surfaces, e.g. printed surfaces; Materials therefor, e.g. comprising photoresists; Apparatus specially adapted therefor

73.

SYSTEM FOR IMPLEMENTING CONTINUOUS CO-PHASE FLEXIBLE ALTERNATING CURRENT TRACTION POWER SUPPLY AND OPERATION MODE THEREFOR

      
Application Number 18245038
Status Pending
Filing Date 2022-03-18
First Publication Date 2023-11-09
Owner
  • CHINA RAILWAY ELECTRIFICATION BUREAU GROUP CO., LTD. (China)
  • TSINGHUA UNIVERSITY (China)
  • CHINA RAILWAY ELECTRICAL INDUSTRY CO., LTD. (China)
Inventor
  • Lin, Yunzhi
  • Wei, Yingdong
  • Li, Xiaoqian
  • Zhao, Yinjun
  • Li, Zhanhe
  • Li, Zengqin
  • Lu, Chao
  • Huang, Hongzhi
  • Li, Ziming
  • Li, Mingrui

Abstract

A system for implementing continuous co-phase flexible alternating current traction power supply and an operation mode therefor includes at least one flexible traction substation and neutral sections. Each flexible traction substation includes a first power inlet line and a second power inlet line, each of which is coupled to one end of a corresponding breaker, the other end of the corresponding breaker is coupled to a primary side of one traction transformer, and a secondary side of the traction transformer is coupled to a plurality of SPCs. SPCs corresponding to each set of traction transformer are coupled in parallel and coupled to a bus of the flexible traction substation through breakers. One feeder line is provided between the bus of the flexible traction substation and each of an up-track line and a down-track line of an overhead contact system, and each feeder line is provided with one up-to-net breaker thereon.

IPC Classes  ?

  • B60M 3/04 - Arrangements for cutting-in and -out of individual track sections

74.

ENCODING AND DECODING METHODS AND APPARATUSES WITH MULTIPLE IMAGE BLOCK DIVISION MANNERS

      
Application Number 18356955
Status Pending
Filing Date 2023-07-21
First Publication Date 2023-11-09
Owner
  • HUAWEI TECHNOLOGIES CO., LTD. (China)
  • TSINGHUA UNIVERSITY (China)
Inventor
  • Lai, Changcai
  • Cao, Xiaoran
  • Lin, Yongbing
  • Liu, Lingzhi
  • He, Yun

Abstract

An decoding method is disclosed, including: parsing a bitstream to obtain a first flag, wherein the first flag specifies whether a current coding block is required to be partitioned; when the first flag specifies that the current coding block is required to be partitioned, parsing the bitstream to obtain a second flag, wherein the second flag specifies whether the current coding blocks is partitioned in a horizontal direction or a vertical direction; partitioning the current coding block into four first rectangular subblocks in the horizontal direction or four second rectangular subblocks in the vertical direction; and reconstructing the current coding block based on the four first rectangular subblocks or the four second rectangular subblocks.

IPC Classes  ?

  • H04N 19/119 - Adaptive subdivision aspects e.g. subdivision of a picture into rectangular or non-rectangular coding blocks
  • H04N 19/147 - Data rate or code amount at the encoder output according to rate distortion criteria
  • H04N 19/124 - Quantisation
  • H04N 19/172 - Methods or arrangements for coding, decoding, compressing or decompressing digital video signals using adaptive coding characterised by the coding unit, i.e. the structural portion or semantic portion of the video signal being the object or the subject of the adaptive coding the unit being an image region, e.g. an object the region being a picture, frame or field

75.

MALICIOUS TRAFFIC IDENTIFICATION METHOD AND RELATED APPARATUS

      
Application Number 18345853
Status Pending
Filing Date 2023-06-30
First Publication Date 2023-11-02
Owner
  • HUAWEI TECHNOLOGIES CO., LTD. (China)
  • TSINGHUA UNIVERSITY (China)
Inventor
  • Wan, Rongfei
  • Zhu, Annan
  • Zhang, Jia
  • Duan, Haixin

Abstract

Embodiments of this disclosure provide a malicious traffic identification method and a related apparatus. The malicious traffic identification method may include: determining a receiving time of first alarm traffic; obtaining, according to a preset policy, a plurality of pieces of second alarm traffic corresponding to the first alarm traffic within a target time period, where the target time period is a time period determined based on the receiving time, and a similarity between each of the plurality of pieces of second alarm traffic and the first alarm traffic is greater than a preset threshold; performing feature extraction on the plurality of pieces of second alarm traffic to obtain first feature information; and determining, based on the first feature information, whether the first alarm traffic is malicious traffic. In embodiments of this disclosure, accuracy of malicious traffic identification on a live network can be improved by using a multi-flow traceback method.

IPC Classes  ?

76.

METHOD AND APPARATUS OF TRAINING RADIATION IMAGE RECOGNITION MODEL ONLINE, AND METHOD AND APPARATUS OF RECOGNIZING RADIATION IMAGE

      
Application Number 18139411
Status Pending
Filing Date 2023-04-26
First Publication Date 2023-11-02
Owner
  • NUCTECH COMPANY LIMITED (China)
  • Tsinghua University (China)
Inventor
  • Chen, Zhiqiang
  • Zhang, Li
  • Zheng, Ao
  • Zhao, Ji
  • Tang, Hu
  • Lei, Lei
  • Wang, Shuo
  • Sun, Yunda

Abstract

Provided are a method and an apparatus of training a radiation image recognition model online and a method and an apparatus of recognizing a radiation image. Preset data is pre-stored in a radiation inspection system, and the preset data includes a first radiation image. The method of training radiation image recognition model online includes: collecting a second radiation image at the radiation inspection site; labeling the second radiation image online to form on-site collected data having a second labeling information, wherein the second labeling information is an incomplete labeling information of the second radiation image, and the second labeling information is used to indicate at least one of objects of interest in the second radiation image; synthesizing the preset data and the on-site collected data online to form a training data set; and training the radiation image recognition model online using the training data set.

IPC Classes  ?

  • G01S 13/88 - Radar or analogous systems, specially adapted for specific applications
  • G06T 5/50 - Image enhancement or restoration by the use of more than one image, e.g. averaging, subtraction
  • G06T 7/62 - Analysis of geometric attributes of area, perimeter, diameter or volume
  • G06T 7/70 - Determining position or orientation of objects or cameras
  • G06V 10/74 - Image or video pattern matching; Proximity measures in feature spaces
  • G06V 20/70 - Labelling scene content, e.g. deriving syntactic or semantic representations

77.

FLUID MEASURING METHOD AND DEVICE AND ELECTRONIC EQUIPMENT

      
Application Number 18193383
Status Pending
Filing Date 2023-03-30
First Publication Date 2023-11-02
Owner Tsinghua University (China)
Inventor
  • Zhu, Yinhai
  • Jiang, Peixue
  • Wang, Yusen

Abstract

This application discloses a fluid measuring method and device and electronic equipment. When a fluid flows in a target pipeline, high-speed cameras obtain a first sampling image set of a tracer particle cluster in the fluid passing a front end of the target pipeline and a second sampling image set of the tracer particle cluster passing a rear end of the target pipeline, thereby obtaining passing time distribution information of the tracer particle cluster passing through the target pipeline. A mean residence time of the fluid in the high-pressure target pipeline is obtained based on the passing time distribution information. In this way, the accuracy of non-intrusive online measurement of the mean residence time of the supercritical pressure fluid in the pipeline is improved.

IPC Classes  ?

  • G01P 5/26 - Measuring speed of fluids, e.g. of air stream; Measuring speed of bodies relative to fluids, e.g. of ship, of aircraft by measuring the direct influence of the streaming fluid on the properties of a detecting optical wave
  • G01P 5/00 - Measuring speed of fluids, e.g. of air stream; Measuring speed of bodies relative to fluids, e.g. of ship, of aircraft
  • G01P 5/14 - Measuring speed of fluids, e.g. of air stream; Measuring speed of bodies relative to fluids, e.g. of ship, of aircraft by measuring differences of pressure in the fluid

78.

THERMALIZED STATE PREPARATION METHOD UNDER QUANTUM SYSTEM, DEVICE AND STORAGE MEDIUM

      
Application Number 18336671
Status Pending
Filing Date 2023-06-16
First Publication Date 2023-11-02
Owner
  • Tencent Technology (Shenzhen) Company Limited (China)
  • Tsinghua University (China)
Inventor
  • Zhang, Shixin
  • Zhang, Shengyu
  • Yao, Hong

Abstract

A thermalized state preparation method under a quantum system, a device and a storage medium relate to the field of quantum technologies. The method includes: acquiring a transformation process performed by a parameterized quantum circuit on an input quantum state of combined qubits to obtain n sets of measurement results (210); processing the second measurement results through a neural network to obtain weight parameters (220); computing a correlation function value of a mixed state of the target quantum system based on the weight parameters and the first measurement results (230); and computing an expected value of an objective function based on the correlation function value (240); adjusting variational parameters taking an expected value convergence of the objective function as a goal (250); and acquiring, under a condition that the expected value satisfies a convergence condition, the mixed state to approximately characterize a thermalized state of the target quantum system (260).

IPC Classes  ?

  • G06N 10/20 - Models of quantum computing, e.g. quantum circuits or universal quantum computers
  • G06N 10/60 - Quantum algorithms, e.g. based on quantum optimisation, or quantum Fourier or Hadamard transforms

79.

ORGANIC ELECTROLUMINESCENT DEVICE AND DISPLAY APPARATUS

      
Application Number 18342043
Status Pending
Filing Date 2023-06-27
First Publication Date 2023-10-26
Owner
  • KunShan Go-Visionox Opto-Electronics Co., Ltd (China)
  • TSINGHUA UNIVERSITY (China)
Inventor
  • Cai, Minghan
  • Duan, Lian
  • Li, Guomeng
  • Li, Feixia
  • Liu, Jun
  • Li, Mengzhen
  • Wang, Hongyu

Abstract

An organic electroluminescent device and a display apparatus, where the organic electroluminescent device includes an anode functional layer, a first electron blocking layer, a second electron blocking layer, a light-emitting layer and a cathode functional layer; the first electron blocking layer includes a red light electron blocking layer and a green light electron blocking layer, which are disposed side by side, and the second electron blocking layer is a blue light electron blocking layer; a HOMO energy level of a red light electron blocking material in the red light electron blocking layer and a HOMO energy level of a green light electron blocking material in the green light electron blocking layer are both lower than a HOMO energy level of a blue light electron blocking material in the blue light electron blocking layer.

IPC Classes  ?

80.

SPECIAL DANGEROUS TERRAIN RECOGNITION METHOD AND APPARATUS FOR FOREST FIRE

      
Application Number 18254564
Status Pending
Filing Date 2021-08-18
First Publication Date 2023-10-26
Owner
  • TSINGHUA UNIVERSITY (China)
  • BEIJING GLOBAL SAFETY TECHNOLOGY CO., LTD. (China)
Inventor
  • Chen, Tao
  • Su, Guofeng
  • Sun, Zhanhui
  • Zhang, Lifan
  • Feng, Zhili
  • Liu, Xin
  • Li, Zhipeng
  • Li, Zheng

Abstract

A method for identifying a forest fire special dangerous terrain includes: obtaining raw digital elevation model (DEM) data of a valley and inverse raw DEM data of a ridge in a target area; extracting an elevation difference and a first derivative of a contour line within a preset range of the target area according to the raw DEM data and/or the inverse raw DEM data; calculating a danger level value of the target area based on the elevation difference and the first derivative of the contour line, in which, when the danger level value is greater than a preset threshold, it is determined that the target area is a dangerous terrain of a valley between two mountains or a narrow ridge.

IPC Classes  ?

  • G06T 7/564 - Depth or shape recovery from multiple images from contours
  • G06T 7/13 - Edge detection
  • G06T 7/00 - Image analysis
  • G06T 7/73 - Determining position or orientation of objects or cameras using feature-based methods

81.

Electrical impedance imaging method, system, storage medium, and electronic device

      
Application Number 18033179
Grant Number 11925449
Status In Force
Filing Date 2021-08-18
First Publication Date 2023-10-19
Grant Date 2024-03-12
Owner TSINGHUA UNIVERSITY (China)
Inventor
  • Zhang, Ke
  • Zhang, Xin
  • Guan, Mingtao
  • Wang, Yibing

Abstract

An electrical impedance imaging method, a system, a storage medium and an electronic device. Said method comprises: acquiring electrical impedance measurement signals of a tested human body area at a plurality of measurement times; for the electrical impedance measurement signal at each measurement time, constructing a corresponding instantaneous differential image on the basis of the electrical impedance measurement signal; constructing an image matrix on the basis of the instantaneous differential images corresponding to the plurality of measurement times, each column in the image matrix being a vector corresponding to the instantaneous differential image; determining, on the basis of the image matrix, a covariance matrix corresponding to the image matrix; obtaining, according to the covariance matrix, a weight vector of the covariance matrix; and obtaining, on the basis of the covariance matrix and the weight vector, an electrical impedance state image of the tested human body area.

IPC Classes  ?

82.

INTELLIGENT UNDERSTANDING SYSTEM FOR REAL-TIME RECONSTRUCTION OF LARGE-SCALE SCENE LIGHT FIELD

      
Application Number 17817483
Status Pending
Filing Date 2022-08-04
First Publication Date 2023-10-19
Owner
  • TSINGHUA UNIVERSITY (China)
  • GUANGDONG OPPO MOBILE TELECOMMUNICATIONS CORP., LTD. (China)
Inventor
  • Fang, Lu
  • Liu, Leyao
  • Zheng, Tian
  • Liu, Ping

Abstract

An intelligent understanding apparatus for real-time reconstruction of a large-scale scene light field includes the following. A data obtaining module obtains a 3D instance depth map, and obtain 3D voxels and voxel color information through simultaneous positioning and map generation. The model constructing module constructs and trains a real-time light field reconstruction network model using a ScanNet dataset. The real-time light field reconstruction network model extracts features of the 3D voxels and voxel color information, and obtain a semantic segmentation result and an instance segmentation result. The semantic segmentation module inputs the 3D voxel and voxel color information corresponding to the 3D instance depth map into the trained real-time light field reconstruction network model, and determine an output as a semantic segmentation result and an instance segmentation result corresponding to the 3D instance depth map.

IPC Classes  ?

  • G06T 7/521 - Depth or shape recovery from the projection of structured light
  • G06V 10/74 - Image or video pattern matching; Proximity measures in feature spaces
  • G06T 7/11 - Region-based segmentation

83.

MINIATURE SPECTRUM CHIP BASED ON UNITS OF DIFFERENT SHAPES, AND METHOD FOR GENERATING MICRO-NANO STRUCTURE ARRAY IN MINIATURE SPECTRUM CHIP

      
Application Number 18017829
Status Pending
Filing Date 2021-08-03
First Publication Date 2023-10-12
Owner TSINGHUA UNIVERSITY (China)
Inventor
  • Cui, Kaiyu
  • Yang, Jiawei
  • Huang, Yidong
  • Zhang, Wei
  • Feng, Xue
  • Liu, Fang

Abstract

A miniature spectrum chip includes a CIS wafer and a light modulation layer. The light modulation layer includes a plurality of micro-nano structure units arranged on the surface of a photosensitive area of the CIS wafer. Each micro-nano structure unit include a plurality of micro-nano structure arrays. In each micro-nano structure unit, different micro-nano structure arrays are two-dimensional gratings formed of internal units of different shapes. In each micro-nano structure unit, internal units provided in different micro-nano structure arrays have different shapes, and each group of micro-nano structure arrays has different modulation effects on light of different wavelengths, such that the degree of freedom of “shape” is fully utilized to obtain rich modulation effects on incident light. The precision of spectral restoration is improved. By using two-dimensional grating structures based on internal units of different shapes, rich wide-spectrum modulation characteristics with regard to incident light are achieved.

IPC Classes  ?

84.

HIGH-TEMPERATURE ENERGY STORAGE HYBRID POLYETHERIMIDE DIELECTRIC THIN FILM, PREPARATION METHOD THEREFOR, AND USE THEREOF

      
Application Number 18333512
Status Pending
Filing Date 2023-06-12
First Publication Date 2023-10-12
Owner TSINGHUA UNIVERSITY (China)
Inventor
  • Li, Qi
  • Yang, Mingcong
  • He, Jinliang
  • Cheng, Sang

Abstract

Provided are a high-temperature energy storage hybrid polyetherimide dielectric film, a preparation method therefor, and use thereof, belonging to the technical field of polymer capacitor films. The method includes: synthesizing a solution of polyether amide acid having a hydroxyl end group or side chain through a reaction of a polyetherimide monomer having a hydroxyl functional group; adding, into the solution of polyether amide acid, water and metal alkoxide as an inorganic component precursor to form uniform sol; and obtaining the high-temperature energy storage hybrid polyetherimide dielectric thin film through coating and thermal imidization. The dielectric thin film is prepared by one-step synthesis and an inorganic phase is introduced during hybridization, dispersion at a molecular level is realized, avoiding an agglomeration of the inorganic phase and improving interface compatibility of the organic phase, as well as enhancing energy storage performance of the dielectric film.

IPC Classes  ?

  • C08G 73/10 - Polyimides; Polyester-imides; Polyamide-imides; Polyamide acids or similar polyimide precursors
  • C08J 5/18 - Manufacture of films or sheets
  • C08K 3/22 - Oxides; Hydroxides of metals
  • H01G 4/33 - Thin- or thick-film capacitors
  • H01G 4/14 - Organic dielectrics

85.

METHOD, DEVICE, EQUIPMENT FOR DETERMINING TEST EVALUATION INFORMATION AND COMPUTER STORAGE MEDIUM

      
Application Number 17623586
Status Pending
Filing Date 2021-05-27
First Publication Date 2023-10-12
Owner
  • CHINA INTELLIGENT AND CONNECTED VEHICLES (BEIJING) RESEARCH INSTITUTE CO., LTD. (China)
  • Tsinghua University (China)
Inventor
  • Chu, Wenbo
  • Li, Keqiang
  • Wan, Shuang
  • Fang, Dalong
  • Huang, Guanfu
  • Du, Xiaoping

Abstract

A method for determining test evaluation information includes: building a hardware-in-the-loop test environment, wherein the hardware-in-the-loop test environment comprises a cloud control platform under test, a road traffic scenario simulation platform, and a real-time simulator, and wherein the road traffic scenario simulation platform is configured to build a variety of road traffic scenarios, the real-time simulator is configured to realize communication between the cloud control platform under test and respective interface boards; determining a test scenario according to a function to be realized by the cloud control platform under test; performing a test operation on the cloud control platform under test based on the hardware-in-the-loop test environment and the test scenario, and collecting functional parameters of the cloud control platform under test; and determining test evaluation information of the cloud control platform under test based on the functional parameters.

IPC Classes  ?

  • G06F 30/15 - Vehicle, aircraft or watercraft design

86.

EXCITATION RESPONSE MEASUREMENT METHOD, ELECTRICAL IMPEDANCE TOMOGRAPHY METHOD, AND STORAGE MEDIUM

      
Application Number 18021713
Status Pending
Filing Date 2021-08-18
First Publication Date 2023-10-12
Owner
  • BEIJING HUARUI BOSHI MEDICAL IMAGING TECHNOLOGY CO., LTD. (China)
  • TSINGHUA UNIVERSITY (China)
Inventor
  • Guan, Mingtao
  • Zhang, Xin
  • Lin, Zhichao

Abstract

An excitation response measurement method, an electrical impedance tomography method, and a storage medium are provided. The excitation response measurement method comprises: respectively applying, at the same moment, excitation currents having different frequencies within a designated frequency range to excitation electrode pairs of at least two electrode belts, and measuring a voltage difference of a measurement electrode pair of each electrode belt at the moment, wherein the excitation electrode pair is selected from multiple electrodes of the same electrode belt, and the measurement electrode pair is selected from electrodes in the same electrode belt other than the excitation electrode pair; and separating the measured voltage differences of the measurement electrode pairs into multiple sets of voltage differences respectively corresponding to the different frequencies of the excitation currents, and using the multiple sets of voltage differences as electrical impedance tomography data.

IPC Classes  ?

87.

SELF-ADHESIVE SANITARY PRODUCT AND PREPARATION METHOD THEREOF

      
Application Number 18048093
Status Pending
Filing Date 2022-10-20
First Publication Date 2023-10-12
Owner Tsinghua University (China)
Inventor Ye, Yilan

Abstract

The disclosure relates to a self-adhesive sanitary product and a preparation method thereof. The product is fingerstall-like or sheet-like, and has a first face on a surface side and a second face on the opposite side of the first face. On the first face, the product has a micro-nano array structure which can achieve reversible wet adhesion and which is configured to be adhered to a vaginal orifice tissue or a urethral orifice tissue. The self-adhesive sanitary product has air permeability and liquid impermeability. When the self-adhesive sanitary product is adhered to the vaginal orifice tissue or the urethral orifice tissue, the self-adhesive sanitary product completely blocks the vaginal orifice or the urethral orifice to prevent contents of the vagina or the urethra from flowing out. The self-adhesive sanitary product according to the present disclosure has the advantages of safety, comfort, privacy, miniature, environmental protection, affordability and the like.

IPC Classes  ?

  • A61F 13/47 - Sanitary towels, incontinence pads or napkins
  • A61L 15/22 - Bandages, dressings or absorbent pads for physiological fluids such as urine or blood, e.g. sanitary towels, tampons containing macromolecular materials
  • A61L 15/28 - Polysaccharides or their derivatives
  • A61L 15/32 - Proteins, polypeptides; Degradation products or derivatives thereof, e.g. albumin, collagen, fibrin, gelatin
  • A61L 15/58 - Adhesives
  • C08L 1/04 - Oxycellulose; Hydrocellulose
  • C08L 5/04 - Alginic acid; Derivatives thereof
  • C08L 5/08 - Chitin; Chondroitin sulfate; Hyaluronic acid; Derivatives thereof
  • C08L 75/04 - Polyurethanes

88.

SUB-GRAPH MATCHING POLICY DETERMINATION METHOD, SUB-GRAPH MATCHING METHOD, SUB-GRAPH COUNTING METHOD AND CALCULATION DEVICE

      
Application Number 18017875
Status Pending
Filing Date 2020-08-27
First Publication Date 2023-10-05
Owner Tsinghua University (China)
Inventor
  • Zhai, Jidong
  • Shi, Tianhui
  • Zhai, Mingshu
  • Xu, Yi

Abstract

Disclosed are a subgraph matching strategy determining method, a subgraph matching method, a counting method, and a device; the matching strategy determining method includes: obtaining a pattern; generating a plurality of restriction sets, for the pattern, each restriction set being capable of eliminating all other automorphisms different from the pattern per se in the automorphisms of the pattern; obtaining a plurality of search order schedules, for the pattern; combining the plurality of restriction sets and the plurality of search order schedules, each combination being referred to as a configuration; using a performance prediction model to predict a computation amount of a subgraph matching algorithm corresponding to each configuration, and determining one or more configurations as a subgraph matching strategy, based on the predicted computation amount. The present disclosure can determine an optimized subgraph matching strategy, reduce redundant computations in subgraph matching, and efficiently and accurately find matched subgraphs. With respect to applications of matched subgraph counting, a subgraph counting schedule using Inclusion-Exclusion Principle to directly count is proposed, which greatly improves computing efficiency.

IPC Classes  ?

  • G06F 16/901 - Indexing; Data structures therefor; Storage structures
  • G06F 18/22 - Matching criteria, e.g. proximity measures

89.

CHEMICAL SYNTHESIS OF LARGE AND MIRROR-IMAGE PROTEINS AND USES THEREOF

      
Application Number 18019847
Status Pending
Filing Date 2021-05-13
First Publication Date 2023-10-05
Owner Tsinghua University (China)
Inventor
  • Zhu, Ting
  • Fan, Chuyao
  • Deng, Qiang
  • Xu, Yuan

Abstract

Provided herein is a general method for producing large (more than 400 aa long) D-amino acids proteins, also referred to as mirror image protein (with respect to their naturally occurring L-amino acids counterparts), including RNA/DNA manipulating enzymes, and uses thereof in a wide range of research, practical data storage and medicinal applications.

IPC Classes  ?

  • C12N 9/12 - Transferases (2.) transferring phosphorus containing groups, e.g. kinases (2.7)
  • C07K 1/02 - General processes for the preparation of peptides in solution
  • C12P 19/34 - Polynucleotides, e.g. nucleic acids, oligoribonucleotides

90.

NOVEL INTELLIGENT ADJUSTABLE PASSIVE ROOF

      
Application Number 18023248
Status Pending
Filing Date 2021-03-23
First Publication Date 2023-10-05
Owner TSINGHUA UNIVERSITY (China)
Inventor
  • Lin, Borong
  • Wu, Yifan
  • Sun, Hongli
  • Duan, Mengfan

Abstract

Disclosed is a novel intelligent adjustable passive roof, comprising an inner roof layer, an air layer, a thermal diode of jumping droplet materials and an outer roof layer which are sequentially arranged from bottom to top. The thermal diode of jumping droplet materials comprises a super-hydrophilic layer, a super-hydrophilic layer surface liquid-absorbing core and a super-hydrophobic layer which are sequentially arranged from bottom to top, and the super-hydrophilic layer is separated from the super-hydrophobic layer by gasket materials on left and right sides to form an intermediate air interlayer. By means of passive heat transfer control of the super-hydrophilic layer and the super-hydrophobic layer in the thermal diode of jumping droplet materials, a novel intelligent adjustable passive roof, which is driven passively by indoor and outdoor temperatures for “heat extraction/heat insulation,” does not need to be manually cleaned, and can be embedded into a building enclosure structure, is formed.

IPC Classes  ?

  • E04D 11/02 - Built-up roofs, i.e. consisting of two or more layers bonded together in situ, at least one of the layers being of watertight composition
  • B32B 3/08 - Layered products essentially comprising a layer with external or internal discontinuities or unevennesses, or a layer of non-planar form; Layered products essentially having particular features of form characterised by features of form at particular places, e.g. in edge regions characterised by added members at particular parts
  • B32B 7/05 - Interconnection of layers the layers not being connected over the whole surface, e.g. discontinuous connection or patterned connection
  • B32B 15/20 - Layered products essentially comprising metal comprising aluminium or copper
  • B32B 15/04 - Layered products essentially comprising metal comprising metal as the main or only constituent of a layer, next to another layer of a specific substance
  • B32B 7/02 - Physical, chemical or physicochemical properties

91.

NONINTRUSIVE TARGET TRACKING METHOD, SURGICAL ROBOT AND SYSTEM

      
Application Number 18128819
Status Pending
Filing Date 2023-03-30
First Publication Date 2023-10-05
Owner Tsinghua University (China)
Inventor
  • Zheng, Gangtie
  • Zhu, Shijie
  • Chen, Yu
  • Zhang, Bicong
  • Pan, Yongwei
  • Zhao, Zhe
  • Deng, Jiuzheng

Abstract

A target tracking method and system for use with a surgical robot is disclosed. The method includes: acquiring a visible light image and a depth image of a marker attached on a patient's body surface, where the marker is provided with a black and white checkerboard pattern, and a two-dimensional code is arranged inside squares of the checkerboard; performing two-dimensional code detection on the visible light image to obtain the checkerboard corners' 2D coordinates and the IDs of the two-dimensional codes on the marker; and obtaining 3D coordinates of checkerboard corners in the marker by using the depth image, 2D code corners' coordinates and 2D code ID. According to the 3D coordinates of the checkerboard corner, the position information of the tracked target in the 3D space is obtained.

IPC Classes  ?

  • A61B 34/20 - Surgical navigation systems; Devices for tracking or guiding surgical instruments, e.g. for frameless stereotaxis
  • A61B 90/00 - Instruments, implements or accessories specially adapted for surgery or diagnosis and not covered by any of the groups , e.g. for luxation treatment or for protecting wound edges

92.

METHOD AND APPARATUS FOR RECONSTRUCTING ATOMIC SPATIAL DISTRIBUTION AND ELECTRON BEAM FUNCTION

      
Application Number 18306985
Status Pending
Filing Date 2023-04-25
First Publication Date 2023-10-05
Owner TSINGHUA UNIVERSITY (China)
Inventor
  • Yu, Rong
  • Yang, Wenfeng
  • Sha, Haozhi
  • Cui, Jizhe

Abstract

The present disclosure discloses a method, which includes: obtaining, by controlling to move an electron beam to scan a sample, a diffraction intensity of the sample at each scanning position; initializing a sample transmission function and an electron beam function, establishing, based on the diffraction intensity, the sample transmission function, and the electron beam function, a forward propagation model containing to-be-optimized parameters, and calculating a value of a loss function; solving a derivative of the loss function with respect to the to-be-optimized parameters, to obtain gradients of the to-be-optimized parameters in the sample transmission function and the electron beam function, optimizing the to-be-optimized parameters based on the gradients, and updating the value of the loss function; and repeating an iteration process until an iteration termination condition is satisfied, and outputting an optimized sample transmission function and an optimized electron beam function.

IPC Classes  ?

  • H01J 37/28 - Electron or ion microscopes; Electron- or ion-diffraction tubes with scanning beams
  • H01J 37/244 - Detectors; Associated components or circuits therefor
  • H01J 37/22 - Optical or photographic arrangements associated with the tube

93.

THREE-DIMENSIONAL POINT CLOUD DATA PROCESSING METHOD AND DEVICE BASED ON INCREMENTAL SPARSE THREE-DIMENSIONAL CONVOLUTION

      
Application Number 17815365
Status Pending
Filing Date 2022-07-27
First Publication Date 2023-10-05
Owner Tsinghua University (China)
Inventor
  • Fang, Lu
  • Liu, Leyao
  • Zheng, Tian

Abstract

A method for processing three-dimensional (3D) point cloud data based on incremental sparse 3D convolution is provided. A computer device obtains 3D point cloud data and forms a training set by processing the 3D point cloud data. The computer device constructs and trains a sparse 3D convolutional network model by inputting the training set. The computer device constructs an incremental sparse 3D convolutional network model by performing incremental replacement of sparse convolutional layers of the trained sparse 3D convolutional network model. The computer device inputs real-time 3D point cloud data into the incremental sparse 3D convolutional network model, and determines an output result as a result of processing the real-time 3D point cloud data. Processing of the 3D point cloud data at least includes 3D semantic segmentation, target detection, 3D classification and video processing.

IPC Classes  ?

  • G06V 10/774 - Generating sets of training patterns; Bootstrap methods, e.g. bagging or boosting
  • G06V 10/82 - Arrangements for image or video recognition or understanding using pattern recognition or machine learning using neural networks
  • G06V 10/56 - Extraction of image or video features relating to colour

94.

Method and apparatus for parsing structured parameters of geocomputation language, device and medium

      
Application Number 18303018
Grant Number 11775270
Status In Force
Filing Date 2023-04-19
First Publication Date 2023-10-03
Grant Date 2023-10-03
Owner Tsinghua University (China)
Inventor Zhou, Wensheng

Abstract

The embodiments of the present disclosure relate to the technical field of GeoComputation, and particularly relates to a method and an apparatus for parsing structured parameters of a GeoComputation language, a device and a storage medium, which aim to parse structured expressions in a DAS document. The method includes: reading GeoComputation task parameters in a DAS document; parsing a structured expression in the GeoComputation task parameters to obtain a task parameter containing a basic expression; and executing a corresponding GeoComputation task according to the task parameter containing the basic expression to obtain a calculation result.

IPC Classes  ?

95.

Method, apparatus, and device for DAS-based custom function expansion, and storage medium

      
Application Number 18090536
Grant Number 11775260
Status In Force
Filing Date 2022-12-29
First Publication Date 2023-10-03
Grant Date 2023-10-03
Owner Tsinghua University (China)
Inventor Zhou, Wensheng

Abstract

Embodiments of the present disclosure relate to the technical field of geocomputation, in particular to a method, an apparatus, a device for DAS-based custom function expansion and a storage medium, aiming at realizing that users may add custom functions and expand G-language custom keywords in DAS. The method includes: generating a corresponding target task script file according to a target geographic analysis task; obtaining an interface identification corresponding to the target task script file according to an interface identification setting rule of DAS; generating a corresponding interfacing script file according to the interface identification and the target task script file; and calling the interfacing script file in a calculation-process table of the DAS by a custom keyword, so as to obtain an analysis result of the target geographic analysis task.

IPC Classes  ?

  • G06F 8/30 - Creation or generation of source code
  • G06F 9/54 - Interprogram communication
  • G06F 11/36 - Preventing errors by testing or debugging of software

96.

FULL-DISTRIBUTED REACTIVE VOLTAGE CONTROL METHOD AND DEVICE, AND STORAGE MEDIUM

      
Application Number 18188553
Status Pending
Filing Date 2023-03-23
First Publication Date 2023-09-28
Owner TSINGHUA UNIVERSITY (China)
Inventor
  • Wu, Wenchuan
  • Li, Siyun
  • Wang, Bin
  • Sun, Hongbin
  • Guo, Qinglai

Abstract

A fully-distributed reactive voltage control method, includes: establishing a power grid reactive voltage optimization model of a power grid; parting the power grid reactive voltage optimization model into a plurality of area reactive voltage optimization models of a plurality of areas of the power grid; converting a power flow equation constraint in each of the plurality of area reactive voltage optimization models to a linear regression model; solving the linear regression model by using a robust recursive regression algorithm to obtain a solution result of the linear regression model; solving each of the plurality of area reactive voltage optimization models by using the solution result of the linear regression model, a gradient projection algorithm, and an alternating direction multiplier algorithm, so as to realize a reactive voltage optimization control of each of the plurality of areas.

IPC Classes  ?

  • H02J 3/18 - Arrangements for adjusting, eliminating or compensating reactive power in networks
  • H02J 3/38 - Arrangements for parallelly feeding a single network by two or more generators, converters or transformers
  • G06F 17/11 - Complex mathematical operations for solving equations

97.

CARBON NANOTUBE COMPOSITE HYDROGEN EVOLUTION CATALYTIC FILM AND METHOD FOR MAKING THE SAME

      
Application Number 17945380
Status Pending
Filing Date 2022-09-15
First Publication Date 2023-09-28
Owner
  • Tsinghua University (China)
  • HON HAI PRECISION INDUSTRY CO., LTD. (Taiwan, Province of China)
Inventor
  • Liu, Kai
  • Li, Chenyu
  • Liu, Mingda
  • Fan, Shou-Shan

Abstract

A method of making a carbon nanotube composite hydrogen evolution catalytic film is provided. The method includes: providing a carbon nanotube film, wherein the carbon nanotube film defines a plurality of spaced holes; providing a precursor solution containing a molybdenum source and a carbon source, and placing the precursor solution on the carbon nanotube film and drying to obtain a precursor film; and energizing the precursor film.

IPC Classes  ?

  • C23C 18/12 - Chemical coating by decomposition of either liquid compounds or solutions of the coating forming compounds, without leaving reaction products of surface material in the coating; Contact plating by thermal decomposition characterised by the deposition of inorganic material other than metallic material

98.

METHOD AND DEVICE FOR FLOORPLAN GENERATION

      
Application Number 18158375
Status Pending
Filing Date 2023-01-23
First Publication Date 2023-09-28
Owner Tsinghua University (China)
Inventor
  • Liu, Nianxiong
  • Yan, Shurui
  • Su, Hang

Abstract

A method for residential unit floorplan generation, includes obtaining a current status of a floorplan, performing a plurality of iterations to obtain a plurality of scores until a predetermined number of iterations is reached, and deploying the one or more rooms to be deployed according to a highest score of the plurality of the scores to update the floorplan. In each of the plurality of iterations, the method further includes obtaining room information of one or more rooms to be deployed through a particle swarm algorithm, according to the room information of the one or more rooms to be deployed, performing multiple Monte Carlo tree searches to obtain coordinate information of the one or more rooms to be deployed, and determining one of the plurality of scores of the room information and the coordinate information through an evaluation function.

IPC Classes  ?

  • G06F 30/27 - Design optimisation, verification or simulation using machine learning, e.g. artificial intelligence, neural networks, support vector machines [SVM] or training a model
  • G06F 30/13 - Architectural design, e.g. computer-aided architectural design [CAAD] related to design of buildings, bridges, landscapes, production plants or roads

99.

SUPPORT FRAME FOR CT SLIP-RING BEARING

      
Application Number 18249959
Status Pending
Filing Date 2021-09-27
First Publication Date 2023-09-28
Owner
  • NUCTECH COMPANY LIMITED (China)
  • TSINGHUA UNIVERSITY (China)
Inventor
  • Zhang, Li
  • Chen, Zhiqiang
  • Hong, Mingzhi
  • Huang, Qingping
  • Wang, Zinan
  • Liang, Jinning
  • Hou, Hongbin

Abstract

Disclosed is a support frame (1) of a CT imaging system, including: a connection flat plate portion (10); a support body portion (20) disposed on the connection flat plate portion (10); an X-ray source installation reference portion (30) disposed on the connection flat plate portion (10); an electrical installation portion (40); a cooling component installation portion (50); and a through hole (60), wherein the through hole is surrounded by the support body portion (20), the X-ray source installation reference portion (30), the electrical installation portion (40) and the cooling component installation portion (50), and the through hole penetrates the connection body portion (10). The connection flat plate portion (10), the support body portion (20), the X-ray source installation reference portion (30), the electrical installation portion (40) and the cooling component installation portion (50) are integrally formed.

IPC Classes  ?

  • A61B 6/03 - Computerised tomographs
  • F16C 35/02 - Rigid support of bearing units; Housings, e.g. caps, covers in the case of sliding-contact bearings

100.

DETECTION COLLIMATION UNIT, DETECTION APPARATUS AND SPECT IMAGING SYSTEM

      
Application Number 18041439
Status Pending
Filing Date 2021-08-12
First Publication Date 2023-09-21
Owner Tsinghua University (China)
Inventor
  • Ma, Tianyu
  • Liu, Yaqiang
  • Wang, Xuewu
  • Wang, Zhong

Abstract

Disclosed are a detection collimation unit, a detection apparatus and a SPECT imaging system. The detection collimation unit includes: a scintillation crystal array configured to receive a gamma photon emitted by a radioactive source in a detected object; and a number of photoelectric devices configured to receive the gamma photon and converting the gamma photon into a digital signal. The scintillation crystal array includes a number of scintillation crystals. The number of scintillation crystals are arranged substantially in parallel and are spaced from each other. Each scintillation crystal has a side face configured to receive a ray emitted by the radioactive source and an end face. The number of photoelectric devices are coupled to the end faces of the number of scintillation crystals.

IPC Classes  ?

  • G01T 1/164 - Scintigraphy
  • G21K 1/02 - Arrangements for handling particles or ionising radiation, e.g. focusing or moderating using diaphragms, collimators
  • G01T 1/29 - Measurement performed on radiation beams, e.g. position or section of the beam; Measurement of spatial distribution of radiation
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