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公开(公告)号:US20210116261A1
公开(公告)日:2021-04-22
申请号:US17247844
申请日:2020-12-26
申请人: Francesc Guim Bernat , Marcos E. Carranza , Satish Chandra Jha , Sindhu Pandian , Lakshmi Talluru , Cesar Martinez-Spessot , Mateo Guzman , Dario Nicolas Oliver , Ignacio J. Alvarez , David Gonzalez Aguirre , Javier Felip Leon , S M Iftekharul Alam
发明人: Francesc Guim Bernat , Marcos E. Carranza , Satish Chandra Jha , Sindhu Pandian , Lakshmi Talluru , Cesar Martinez-Spessot , Mateo Guzman , Dario Nicolas Oliver , Ignacio J. Alvarez , David Gonzalez Aguirre , Javier Felip Leon , S M Iftekharul Alam
摘要: Disclosed herein are systems and methods for vehicle-occupancy-based and user-preference-based smart routing, and autonomous volumetric-occupancy measurement. In an embodiment, a system is configured to receive from a user device associated with a user, a routing-options request for routing options between two locations, and to responsively identify one or more routing options between the two locations based at least in part on occupancy data for a vehicle that would be utilized for at least a portion of at least one of the identified routing options. The occupancy data is based on an output of an automated occupancy-measurement system onboard the vehicle. The system is also configured to provide the one or more identified routing options to the user device. In some embodiments, the occupancy data is obtained using volumetric-occupancy measurement. Some embodiments relate to volumetric-occupancy measurement conducted by autonomous mesh nodes.
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公开(公告)号:US20220014466A1
公开(公告)日:2022-01-13
申请号:US17484125
申请日:2021-09-24
IPC分类号: H04L12/747 , H04L29/08 , H04L29/06
摘要: System and techniques for information centric network tunneling are described herein. At an ICN router, a data handle for data—that includes an indication of security metadata—is received. The security metadata is obtained based on the data handle and the data is cached based on the security metadata. An ICN node at an interface of the ICN router is tested for compatibility with the security metadata and a version of the data is transmitted to the ICN node based on the compatibility of the ICN node with the security metadata.
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公开(公告)号:US20210328783A1
公开(公告)日:2021-10-21
申请号:US17358474
申请日:2021-06-25
IPC分类号: H04L9/08
摘要: System and techniques for decentralized key generation and management are described herein. An information centric network (ICN) node receives a first ICN interest packet for public encryption parameters of an identity based encryption (IBE) key generation center (KGC). Public encryption parameters for the KGC are received in a first ICN data packet in response to the first ICN interest packet. The public encryption parameters are cached and used to respond a second ICN interest packet for the public parameters. A third ICN data packet may be received from the KGC in response to a key generation request. Here, the third data packet includes an indication that the third ICN data packet is part of a one-time session. Then, the third ICN data packet is transmitted without caching the third ICN data packet content based on the indication.
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公开(公告)号:US20210320988A1
公开(公告)日:2021-10-14
申请号:US17358525
申请日:2021-06-25
申请人: Yi Zhang , Gabriel Arrobo Vidal , Srikathyayani Srikanteswara , Francesc Guim Bernat , Christian Maciocco
发明人: Yi Zhang , Gabriel Arrobo Vidal , Srikathyayani Srikanteswara , Francesc Guim Bernat , Christian Maciocco
摘要: System and techniques for information centric network unstructured data carrier are described herein. A user plane function (UPF) node receives an initiation for a packet data unit (PDU) session of user equipment (UE). Here, the initiation includes an indication for an ICN session and a PDU session identification (ID). The PDU session may then map the PDU session to the PDU session ID in an ICN routing data structure. Here, the ICN routing data structure is one or both of the pending interest table (PIT) or the forwarding interest base (FIB) of the UPF node. An ICN packet (interest or data packet) may be from the UE contained within a PDU on from the PDU session that conforms to an unstructured-data classification as defined by a 3GPP 5G family of standards. The ICN packet is extracted from the PDU and routed in accordance with the ICN routing data structure.
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公开(公告)号:US20230135938A1
公开(公告)日:2023-05-04
申请号:US18090813
申请日:2022-12-29
申请人: Marcos E. Carranza , Francesc Guim Bernat , Kshitij Arun Doshi , Karthik Kumar , Srikathyayani Srikanteswara , Mateo Guzman
发明人: Marcos E. Carranza , Francesc Guim Bernat , Kshitij Arun Doshi , Karthik Kumar , Srikathyayani Srikanteswara , Mateo Guzman
IPC分类号: H04L67/63 , H04L67/1087
摘要: Various approaches for service mech switching, including the use of infrastructure processing units (IPUs) and similar networked processing units, are disclosed. For example, a packet that includes a service request for a service may be received at a networking infrastructure device. The service may include an application that spans multiple nodes in a network. An outbound interface of the networking infrastructure device may be selected through which to route the packet. The selection of the outbound interface may be based on a service component of the service request in the packet and network metrics that correspond to the service. The packet may then be transmitted using the outbound interface.
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公开(公告)号:US20230020732A1
公开(公告)日:2023-01-19
申请号:US17957747
申请日:2022-09-30
申请人: Francesc Guim Bernat , Kshitij Arun Doshi , Ned M. Smith , Raghu Kondapalli , Alexander Bachmutsky
发明人: Francesc Guim Bernat , Kshitij Arun Doshi , Ned M. Smith , Raghu Kondapalli , Alexander Bachmutsky
摘要: Various systems and methods for providing adaptable sensor data collection are described herein. A system, includes: a sensor interface to receive sensor data; processing circuitry to: process the sensor data according to a configuration to generate processed sensor data; and transmit the processed sensor data to a plurality of data consumer devices; and feedback circuitry to: receive feedback from the plurality of data consumer systems; and revise the configuration based on the feedback from the plurality of data consumer systems, to modify subsequent processing of sensor data before transmitting to the plurality of data consumer systems.
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公开(公告)号:US20190141536A1
公开(公告)日:2019-05-09
申请号:US16235420
申请日:2018-12-28
申请人: Alexander Bachmutsky , Dario Sabella , Francesc Guim Bernat , John J. Browne , Kapil Sood , Kshitij Arun Doshi , Mats Gustav Agerstam , Ned M. Smith , Rajesh Poornachandran , Tarun Viswanathan
发明人: Alexander Bachmutsky , Dario Sabella , Francesc Guim Bernat , John J. Browne , Kapil Sood , Kshitij Arun Doshi , Mats Gustav Agerstam , Ned M. Smith , Rajesh Poornachandran , Tarun Viswanathan
摘要: A service coordinating entity device includes communications circuitry to communicate with a first access network, processing circuitry, and a memory device. The processing circuitry is to perform operations to, in response to a request for establishing a connection with a user equipment (UE) in a second access network, retrieve a first Trusted Level Agreement (TLA) including trust attributes associated with the first access network. One or more exchanges of the trust attributes of the first TLA and trust attributes of a second TLA associated with the second access network are performed using a computing service executing on the service coordinating entity. A common TLA with trust attributes associated with communications between the first and second access networks is generated based on the exchanges. Data traffic is routed from the first access network to the UE in the second access network based on the trust attributes of the common TLA.
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公开(公告)号:US20210011765A1
公开(公告)日:2021-01-14
申请号:US17028809
申请日:2020-09-22
摘要: Systems and techniques for adaptive limited-duration edge resource management are described herein. Available capacity may be calculated for a resource for a node of the edge computing network based on workloads executing on the node. Available set-aside resources may be determined based on the available capacity. A service request may be received from an application executing on the edge computing node. A priority category may be determined for the service request. Set-aside resources from the available set-aside resources may be assigned to a workload associated with the service request based on the priority category.
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公开(公告)号:US20230132992A1
公开(公告)日:2023-05-04
申请号:US18090786
申请日:2022-12-29
摘要: Various approaches for monitoring and responding to orchestration or service failures with the use of infrastructure processing units (IPUs) and similar networked processing units are disclosed. A method performed by a computing device for deploying remedial actions in failure scenarios of an orchestrated edge computing environment may include: identifying an orchestration configuration of a controller entity (responsible for orchestration) and a worker entity (subject to the orchestration to provide at least one service); determining a failure scenario of the orchestration of the worker entity, such as at a networked processing unit implemented at a network interface located between the controller entity and the worker entity; and causing a remedial action to resolve the failure scenario and modify the orchestration configuration, such as replacing functionality of the controller entity or the worker entity with functionality at a replacement entity.
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公开(公告)号:US20210144202A1
公开(公告)日:2021-05-13
申请号:US17097117
申请日:2020-11-13
申请人: Christian Maciocco , Trevor Cooper , Valerie J. Parker , Rajesh Poornachandran , Francesc Guim Bernat , Kshitij Arun Doshi , Ned M. Smith
发明人: Christian Maciocco , Trevor Cooper , Valerie J. Parker , Rajesh Poornachandran , Francesc Guim Bernat , Kshitij Arun Doshi , Ned M. Smith
摘要: Methods, systems, and use cases for extended P2P communication with edge networking are discussed, including an edge computing device with a memory device and processing circuitry. The processing circuitry receives a request from a second edge computing device to perform a P2P exchange. A set of services for execution by the processing circuitry during the P2P exchange is determined. The processing circuitry further determines whether an enhanced edge service is available to substitute at least one service of the set of services. The enhanced edge service is associated with processing resources that are external to the edge computing device. Based on a successful determination that the enhanced edge service is available, the processing resources of the edge computing system that are external to the edge computing device are utilized to execute the enhanced edge service in place of the at least one service during the P2P exchange.
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