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公开(公告)号:US20240283742A1
公开(公告)日:2024-08-22
申请号:US18648425
申请日:2024-04-28
IPC分类号: H04L47/24 , G06F13/40 , G06F13/42 , H04L45/74 , H04L47/125 , H04L49/25 , H04L69/32 , H04L69/324
CPC分类号: H04L47/24 , G06F13/4022 , G06F13/4282 , H04L45/74 , H04L47/125 , H04L49/25 , H04L69/32 , H04L69/324
摘要: Datalink frames or networking packets contain protocol information in the header and optionally in the trailer of a frame or a packet. We are proposing a method in which part of or all of the protocol information corresponding to a frame, or a packet is transmitted separately in another datalink frame. The “Separately Transmitted Protocol Information” is referred to as STPI. The STPI contains enough protocol information to identify the next hop node or port. STPI can be used avoid network congestion and improve link efficiency. Preferably, there will be one datalink frame or network packet corresponding to each STPI, containing the data and the rest of the protocol information and this frame/packet is referred to as DFoNP. The creation of STPI and DFoNP is done by the originator of the frame or packet such as an operating system.
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公开(公告)号:US20240243968A1
公开(公告)日:2024-07-18
申请号:US18621408
申请日:2024-03-29
IPC分类号: H04L41/0806 , H04L67/025 , H04L69/32 , H04L47/19 , H04L49/253 , H04L69/329
CPC分类号: H04L41/0806 , H04L67/025 , H04L69/32 , H04L47/19 , H04L49/253 , H04L69/329
摘要: A first fabric abstraction layer couples to a data link layer and a physical layer of a network fabric device. The network fabric device is connected to other network elements within a network via at least one network connection, such as a fiber optic connection. A second fabric abstraction layer couples to the data link layer and an application of the network device. The second fabric abstraction layer provides an application programming interface (API) to the application. The API allows the application to generate configuration instructions for configuring the at least one network connection. Upon receiving the configuration instructions generated by the application, the second abstraction layer sends the configuration instructions to the first abstraction layer via the data link layer. The first abstraction layer then configures the at least one network connection to transmit data according to the configuration instructions.
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公开(公告)号:US20240171525A1
公开(公告)日:2024-05-23
申请号:US18456140
申请日:2023-08-25
申请人: RISC Networks, LLC
发明人: Jeremy Littlejohn , Greg Watts
CPC分类号: H04L47/803 , H04L41/145 , H04L43/062 , H04L43/12 , H04L67/10 , H04L69/32
摘要: A method is described that comprises collecting communication data travelling among a plurality of computing nodes in a networked environment. The method includes using the communication data to create a plurality of connectivity records, wherein each connectivity record comprises a communication between a source computing node and a destination computing node of the plurality of computing nodes. The method includes associating the communication with an application context and protocol. The method includes processing the plurality of connectivity records to eliminate connectivity records that meet at least one criteria, wherein the plurality of connectivity records includes associated application contexts and protocols, wherein a first portion of the plurality of connectivity records comprises the eliminated connectivity records, wherein a second portion of the plurality of connectivity records comprises the remainder of the connectivity records. The method includes building a graph using the second portion of the connectivity records.
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公开(公告)号:US11888967B2
公开(公告)日:2024-01-30
申请号:US17871429
申请日:2022-07-22
申请人: Intel Corporation
发明人: Francesc Guim Bernat
IPC分类号: H04L41/0896 , H04L41/5025 , H04L9/08 , G06F3/06 , G06F9/50 , H04L69/12 , H04L69/32 , G06F16/25 , G06F16/2453 , H04L49/9005 , G11C8/12 , G11C29/02 , G06F30/34 , B25J15/00 , G06F1/18 , G06F1/20 , G06F11/34 , G06F15/78 , H04L67/1008 , H05K7/14 , H05K7/18 , H05K7/20 , H04L67/1001 , G11C29/36 , G11C29/38 , G11C29/44 , G06F16/22 , G06F16/2455 , G06F12/02 , G06F12/14 , G06F13/16 , G06F15/173 , G06F13/40 , G06F13/42 , G06F9/448 , G06F9/28 , G06F15/16 , H04L41/0893 , H04L69/22 , H04L69/321 , H04L41/0213 , H04L41/0668 , H04L41/0677 , H04L45/28 , H04L45/7453 , H04L47/11 , H04L47/125 , H04L49/00 , H04L49/351 , G06F9/4401 , G06F9/445 , G06F12/06 , G06F16/23 , G06F16/248 , G06F16/901 , G06F16/11 , G06F9/44 , G06F9/48 , G06F21/10 , G06N3/063 , G06Q10/0631 , G06Q30/0283 , H04L41/14 , H04L41/5019 , H04L49/40 , H04L9/40 , G06F12/0802 , G06F12/1045
CPC分类号: H04L9/0819 , B25J15/0014 , G06F1/183 , G06F1/20 , G06F3/0604 , G06F3/065 , G06F3/0605 , G06F3/067 , G06F3/0611 , G06F3/0613 , G06F3/0629 , G06F3/0631 , G06F3/0632 , G06F3/0644 , G06F3/0647 , G06F3/0659 , G06F3/0673 , G06F3/0683 , G06F3/0685 , G06F9/28 , G06F9/445 , G06F9/4406 , G06F9/4411 , G06F9/4494 , G06F9/505 , G06F9/5044 , G06F9/5088 , G06F11/3442 , G06F12/023 , G06F12/06 , G06F12/0607 , G06F12/14 , G06F13/1663 , G06F13/1668 , G06F13/4068 , G06F13/42 , G06F15/161 , G06F15/17331 , G06F15/7807 , G06F15/7867 , G06F16/119 , G06F16/221 , G06F16/2237 , G06F16/2255 , G06F16/2282 , G06F16/2365 , G06F16/248 , G06F16/2453 , G06F16/2455 , G06F16/24553 , G06F16/25 , G06F16/9014 , G06F30/34 , G11C8/12 , G11C29/028 , G11C29/36 , G11C29/38 , G11C29/44 , H04L9/0894 , H04L41/0213 , H04L41/0668 , H04L41/0677 , H04L41/0893 , H04L41/0896 , H04L41/5025 , H04L45/28 , H04L45/7453 , H04L47/11 , H04L47/125 , H04L49/30 , H04L49/351 , H04L49/9005 , H04L67/1001 , H04L67/1008 , H04L69/12 , H04L69/22 , H04L69/32 , H04L69/321 , H05K7/1489 , H05K7/18 , H05K7/20209 , H05K7/20736 , G06F9/44 , G06F9/4401 , G06F9/4856 , G06F9/5061 , G06F12/0802 , G06F12/1054 , G06F12/1063 , G06F13/4022 , G06F15/1735 , G06F21/105 , G06F2200/201 , G06F2201/85 , G06F2209/509 , G06F2212/1044 , G06F2212/1052 , G06F2212/601 , G06F2213/0026 , G06F2213/0064 , G06F2213/3808 , G06N3/063 , G06Q10/0631 , G06Q30/0283 , H04L41/14 , H04L41/5019 , H04L49/40 , H04L63/0428 , H05K7/1498
摘要: Technologies for dynamic accelerator selection include a compute sled. The compute sled includes a network interface controller to communicate with a remote accelerator of an accelerator sled over a network, where the network interface controller includes a local accelerator and a compute engine. The compute engine is to obtain network telemetry data indicative of a level of bandwidth saturation of the network. The compute engine is also to determine whether to accelerate a function managed by the compute sled. The compute engine is further to determine, in response to a determination to accelerate the function, whether to offload the function to the remote accelerator of the accelerator sled based on the telemetry data. Also the compute engine is to assign, in response a determination not to offload the function to the remote accelerator, the function to the local accelerator of the network interface controller.
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公开(公告)号:US11665405B2
公开(公告)日:2023-05-30
申请号:US17588936
申请日:2022-01-31
发明人: Noritaka Iguchi , Tadamasa Toma , Hisaya Katou
IPC分类号: H04N7/20 , H04N21/643 , H04L69/04 , H04L69/22 , H04L69/28 , H04N21/242 , H04N21/43 , H04N21/61 , H04N21/845 , H04N21/8547 , H04L61/5007 , H04L69/32 , H04J3/06
CPC分类号: H04N21/64322 , H04L61/5007 , H04L69/04 , H04L69/22 , H04L69/28 , H04L69/32 , H04N21/242 , H04N21/4302 , H04N21/6125 , H04N21/6143 , H04N21/6175 , H04N21/6193 , H04N21/845 , H04N21/8547 , H04J3/0667
摘要: A transmission method includes: generating one or more transfer frames that each store one or more streams used for content transfer; and transmitting the one or more generated frames through broadcast, each of the one or more streams storing one or more second transfer units, each of the one or more second transfer units storing one or more first transfer units, and each of the one or more first transfer units storing one or more Internet Protocol (IP) packets. In at least one stream among the one or more streams, each of the first transfer units positioned at a head contains reference clock information indicating time used for reproduction of the content.
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公开(公告)号:US10079919B2
公开(公告)日:2018-09-18
申请号:US15167707
申请日:2016-05-27
发明人: Steve Pope , Kieran Mansley , Sian James , David J. Riddoch
IPC分类号: H04L29/08 , H04L12/931 , H04L1/00
CPC分类号: H04L69/322 , H04L1/0061 , H04L49/602 , H04L69/32
摘要: Data is received at a buffer used by a protocol processing stack which protocol processes the received data. The received data is made available to, for example, an application, before the protocol processing of the data is complete. If the protocol processing is successful the data made available to the application is committed.
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公开(公告)号:US20180097918A1
公开(公告)日:2018-04-05
申请号:US15719551
申请日:2017-09-29
申请人: MEDIATEK INC.
IPC分类号: H04L29/08 , H04W28/06 , H04L5/00 , H04L29/06 , H04L12/835
CPC分类号: H04L69/324 , H04L5/0046 , H04L5/0091 , H04L47/30 , H04L69/16 , H04L69/166 , H04L69/22 , H04L69/32 , H04W28/065
摘要: Methods of segmentation and concatenation for new radio user plane are proposed. For high speed data traffic, all PDCP PDUs are segmented into fixed-length segments at RLC layer. The MAC layer can then concatenate these segments based on real time uplink grants. Under this mechanism, segmentation related header fields can be pre-computed since they are not dependent on the uplink grant process. For low data rate with small packet size traffic, a solution of PDCP layer concatenation is proposed to reduce protocol overhead. Multiple PDCP SDUs are concatenated into a single PDCP PDU. The level of PDCP concatenation is configured by the base station or implemented by the UE.
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公开(公告)号:US20180054754A1
公开(公告)日:2018-02-22
申请号:US15795960
申请日:2017-10-27
发明人: Jeremy A. Weinrib , Purva Rajkotia
CPC分类号: H04W28/0268 , H04L67/322 , H04L69/16 , H04L69/161 , H04L69/32 , H04W72/1231 , H04W72/1242 , H04W80/06 , H04W88/04
摘要: There is provided a method and system for optimizing delivery of data to a mobile device over a network. According to one embodiment, the invention includes a communication stack, such as a TCP/IP stack, which includes an application protocol interface (API) between an application layer and a transport layer. According to this embodiment, the method includes receiving delivery optimization information; determining the priority of the data using the delivery optimization information; providing the priority of the data to a physical layer in the communication stack; and delivering the data to the mobile device based on the priority.
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公开(公告)号:US20180027034A1
公开(公告)日:2018-01-25
申请号:US15655585
申请日:2017-07-20
申请人: TAP SOUND SYSTEM
发明人: Julien GOUPY , Thomas GIRARDIER
IPC分类号: H04L29/06
CPC分类号: H04L65/4076 , H04L65/1046 , H04L65/608 , H04L65/80 , H04L69/32 , H04W4/80 , H04W80/00
摘要: Disclosed is a device (DEV) for controlling Bluetooth multimedia devices, the controlling device including a Bluetooth chip (BC) arranged to implement a modified A2DP profile (A2DP′) so as to create a point-to-multipoint link (LNK) from the Bluetooth chip to several Bluetooth multimedia devices (SPK1, SPK2, SPKN), the Bluetooth chip of the controlling device being arranged to stream several interconnected multimedia streams, each to a respective Bluetooth multimedia device from among the several Bluetooth multimedia devices, based on a non-blocking Bluetooth usage. The description also refers to a method for controlling Bluetooth multimedia devices, to a computer program arranged to implement such a method as well as to a storage medium storing such a computer program.
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公开(公告)号:US20170366622A9
公开(公告)日:2017-12-21
申请号:US12884781
申请日:2010-09-17
申请人: Michael St. Laurent , Mark Onischke , Michael Kuindersma , Dharmesh Krishnammagaru , Jonathon Stairs , Ken Noreikis
发明人: Michael St. Laurent , Mark Onischke , Michael Kuindersma , Dharmesh Krishnammagaru , Jonathon Stairs , Ken Noreikis
摘要: A method and corresponding system for providing access to network resources, the system comprising: a resource registry including resource records associated with each of the network resources, at least one of the resource records identifies a physical location of the associated network resource; and an administration server for responding to a query containing criteria wherein at least one of the criteria is geographical coordinates, the administration server is configured to access the resource registry to obtain a list of one or more nearest network resources to the geographical coordinates based on the respective physical location of the network resources, and to transmit the list of nearest network resources in response to the query.
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