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Résultats pour
brevets
1.
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System and method for enabling a scalable public-key infrastructure on a smart grid network
Numéro d'application |
13797378 |
Numéro de brevet |
08949594 |
Statut |
Délivré - en vigueur |
Date de dépôt |
2013-03-12 |
Date de la première publication |
2014-09-18 |
Date d'octroi |
2015-02-03 |
Propriétaire |
Silver Spring Networks, Inc. (USA)
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Inventeur(s) |
- Vigliaturo, Christopher
- Damm, Benjamin
- Drinan, David
- Hilbert, Aditi
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Abrégé
A method for enabling a scalable public-key infrastructure (PKI) comprises invoking a process of receiving a message for a device, identifying an association ID for the device, retrieving encrypted association keys stored on the server for communicating with the device, the encrypted association keys encrypted using a wrapping key stored on a Hardware Security Module (HSM). The method further comprises sending the message and the encrypted association keys to the HSM, unwrapping, by the HSM, the encrypted association keys to create unwrapped association keys, cryptographically processing the message to generate a processed message, deleting the unwrapped association keys, sending the processed message to the device, and invoking, concurrently and by a second application, the process.
Classes IPC ?
- H04L 29/06 - Commande de la communication; Traitement de la communication caractérisés par un protocole
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2.
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Method and system for providing network and routing protocols for utility services
Numéro d'application |
13762876 |
Numéro de brevet |
08819279 |
Statut |
Délivré - en vigueur |
Date de dépôt |
2013-02-08 |
Date de la première publication |
2013-06-13 |
Date d'octroi |
2014-08-26 |
Propriétaire |
Silver Spring Networks, Inc. (USA)
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Inventeur(s) |
- Flammer, George
- Hughes, Sterling
- Mckernan, Daniel
- Vaswani, Raj
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Abrégé
A method and system of operating a utility node to communicate in a wireless utility network are provided. A utility node in the wireless utility network discovers at least two access points each respectively constituting an interface between a wide area network and the wireless utility network. The node discovers at least two access points constituting an interface between the two networks, registers with the discovered access points, and obtains at least two unique network addresses each respectively associated with a corresponding one of the access points with which the node has registered. The node provides the at least two addresses to a back office server which is communication with the wide area network to provide the back office server with at least two routes to reach the node. The at least two routes are respectively associated with a corresponding one of the access points with which the node registered.
Classes IPC ?
- G06F 15/173 - Communication entre processeurs utilisant un réseau d'interconnexion, p.ex. matriciel, de réarrangement, pyramidal, en étoile ou ramifié
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3.
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Updating routing and outage information in a communications network
Numéro d'application |
13647835 |
Numéro de brevet |
08532149 |
Statut |
Délivré - en vigueur |
Date de dépôt |
2012-10-09 |
Date de la première publication |
2013-02-07 |
Date d'octroi |
2013-09-10 |
Propriétaire |
Silver Spring Networks, Inc. (USA)
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Inventeur(s) |
- Van Greunen, Jana
- Hughes, Sterling
- Vaswani, Raj
- San Filippo, Iii, William E.
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Abrégé
After power is restored to a node in a utility network, that node employs one or more of its neighboring nodes as proxies to route a message to a central control facility of the utility. The message contains information about the restored node, and possibly one or more of its neighbor nodes. This information may include reboot counters, the amount of time that the node was down, momentary outages or power fluctuations, and/or the time of power restoration. The node that creates and initially sends the message can be the restored node itself, or another node that recognizes when a restored node has recently come back online.
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4.
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Method and system for providing network and routing protocols for utility services
Numéro d'application |
13419288 |
Numéro de brevet |
08396987 |
Statut |
Délivré - en vigueur |
Date de dépôt |
2012-03-13 |
Date de la première publication |
2012-07-05 |
Date d'octroi |
2013-03-12 |
Propriétaire |
Silver Spring Networks, Inc. (USA)
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Inventeur(s) |
- Flammer, George
- Hughes, Sterling
- Mckernan, Daniel
- Vaswani, Raj
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Abrégé
A method and system of operating a utility node to communicate in a wireless utility network are provided. A utility node in the wireless utility network discovers at least two access points each respectively constituting an interface between a wide area network and the wireless utility network. The node discovers at least two access points constituting an interface between the two networks, registers with the discovered access points, and obtains at least two unique network addresses each respectively associated with a corresponding one of the access points with which the node has registered. The node provides the at least two addresses to a back office server which is communication with the wide area network to provide the back office server with at least two routes to reach the node. The at least two routes are respectively associated with a corresponding one of the access points with which the node registered.
Classes IPC ?
- G06F 15/173 - Communication entre processeurs utilisant un réseau d'interconnexion, p.ex. matriciel, de réarrangement, pyramidal, en étoile ou ramifié
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5.
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Powerline carrier zero-crossing transformer mapping with asymmetric RF return path
Numéro d'application |
12954136 |
Numéro de brevet |
08755303 |
Statut |
Délivré - en vigueur |
Date de dépôt |
2010-11-24 |
Date de la première publication |
2011-05-26 |
Date d'octroi |
2014-06-17 |
Propriétaire |
Silver Spring Networks, Inc. (USA)
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Inventeur(s) |
- Hughes, Sterling
- Pace, James
- Van Greunen, Jana
- San Filippo, Iii, William E.
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Abrégé
Techniques are disclosed by which RF mesh networks can identify utility distribution topologies by using power line communication combined with wireless networking to identify the mapping of transformers and other distribution equipment at a back office system server. At a specified time, an item of distribution equipment signals a unique identifier by introducing a phase shift in the electric power being delivered by that equipment. A meter node detects and decodes these temporal shifts to obtain an identifier of equipment supplying the power to it. Upon ascertaining this identification, the meter node sends an acknowledgment to thereby register with that equipment. The association of the particular customer's premises with the equipment is also sent to a back office system, to enable a map of the correspondence between meter and the equipment to be generated.
Classes IPC ?
- H04W 16/00 - Planification du réseau, p.ex. outils de planification de couverture ou de trafic; Déploiement de réseau, p.ex. répartition des ressources ou structures des cellules
- H04B 3/54 - Systèmes de transmission par lignes de réseau de distribution d'énergie
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