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公开(公告)号:US20240031280A1
公开(公告)日:2024-01-25
申请号:US18469804
申请日:2023-09-19
发明人: Qiang FAN , Xiaoying XU
IPC分类号: H04L45/302 , H04L45/00
CPC分类号: H04L45/3065 , H04L45/38
摘要: A data transmission method and an apparatus. A first core network device obtains a transmission mode of a first service. The transmission mode of the first service is an acknowledged mode or an unacknowledged mode. The first core network device indicates a transmission mode of a first QoS flow to an access network device. The first QoS flow belongs to the first service. According to the method, the access network device can obtain the transmission mode of the first service from the core network device. When a data packet loss or transmission failure occurs, the access network device and a terminal device may determine, based on the transmission mode of the service, whether reliability of unidirectional transmission needs to be improved or reliability of bidirectional transmission needs to be improved.
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公开(公告)号:US20240015092A1
公开(公告)日:2024-01-11
申请号:US17861536
申请日:2022-07-11
申请人: Red Hat, Inc.
发明人: Leigh Griffin , Pierre-Yves Chibon
IPC分类号: H04L45/12 , H04L45/302 , H04L67/561
CPC分类号: H04L45/123 , H04L45/302 , H04L67/561
摘要: An application programming interface (API) gateway device receives an API request from a client device, the API gateway to provide access to a plurality of services provided by a plurality of compute nodes. A cluster manifest is created based on metadata associated with the API request and characteristics of the plurality of services, the cluster manifest identifying a logical view of a subset of the plurality of services provided by a subset of the plurality of compute nodes. The API request is routed to one of the subset of the plurality of services based on the cluster manifest.
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公开(公告)号:US20240015084A1
公开(公告)日:2024-01-11
申请号:US18471125
申请日:2023-09-20
发明人: Sunil Kumar Gupta , Navindra Yadav , Michael Standish Watts , Ali Parandehgheibi , Shashidhar Gandham , Ashutosh Kulshreshtha , Khawar Deen
IPC分类号: H04L43/045 , H04L9/40 , G06F9/455 , G06N20/00 , G06F21/55 , G06F21/56 , G06F16/28 , G06F16/2457 , G06F16/248 , G06F16/29 , G06F16/16 , G06F16/17 , G06F16/11 , G06F16/13 , G06F16/174 , G06F16/23 , G06F16/9535 , G06N99/00 , H04L9/32 , H04L41/0668 , H04L43/0805 , H04L43/0811 , H04L43/0852 , H04L43/106 , H04L45/00 , H04L45/50 , H04L67/12 , H04L43/026 , H04L61/5007 , H04L67/01 , H04L67/51 , H04L67/75 , H04L67/1001 , H04W72/54 , H04L43/062 , H04L43/10 , H04L47/2441 , H04L41/0893 , H04L43/08 , H04L43/04 , H04W84/18 , H04L67/10 , H04L41/046 , H04L43/0876 , H04L41/12 , H04L41/16 , H04L41/0816 , G06F21/53 , H04L41/22 , G06F3/04842 , G06F3/04847 , H04L41/0803 , H04L43/0829 , H04L43/16 , H04L1/24 , H04L9/08 , H04J3/06 , H04J3/14 , H04L47/20 , H04L47/32 , H04L43/0864 , H04L47/11 , H04L69/22 , H04L45/74 , H04L47/2483 , H04L43/0882 , H04L41/0806 , H04L43/0888 , H04L43/12 , H04L47/31 , G06F3/0482 , G06T11/20 , H04L43/02 , H04L47/28 , H04L69/16 , H04L45/302
CPC分类号: H04L43/045 , H04L63/1425 , H04L63/1441 , H04L63/20 , G06F9/45558 , G06N20/00 , G06F21/552 , G06F21/566 , G06F16/285 , G06F16/288 , G06F16/24578 , G06F16/248 , G06F16/29 , G06F16/162 , G06F16/17 , G06F16/122 , G06F16/137 , G06F16/173 , G06F16/1744 , G06F16/2322 , G06F16/235 , G06F16/9535 , G06F16/1748 , G06F16/174 , G06N99/00 , H04L9/3239 , H04L41/0668 , H04L43/0805 , H04L43/0811 , H04L43/0858 , H04L43/106 , H04L45/46 , H04L45/507 , H04L63/1458 , H04L67/12 , H04L43/026 , H04L61/5007 , H04L67/01 , H04L67/51 , H04L67/75 , H04L67/1001 , G06F21/556 , H04W72/54 , H04L63/1416 , H04L63/145 , H04L43/062 , H04L43/10 , H04L47/2441 , H04L41/0893 , H04L43/08 , H04L43/04 , H04W84/18 , H04L67/10 , H04L41/046 , H04L43/0876 , H04L41/12 , H04L41/16 , H04L41/0816 , G06F21/53 , H04L63/16 , H04L41/22 , G06F3/04842 , G06F3/04847 , H04L41/0803 , H04L43/0829 , H04L43/16 , H04L1/242 , H04L9/0866 , H04L9/3242 , H04L63/06 , H04L63/0876 , H04J3/0661 , H04J3/14 , H04L47/20 , H04L47/32 , H04L43/0841 , H04L43/0864 , H04L47/11 , H04L63/1408 , H04L69/22 , H04L45/74 , H04L47/2483 , H04L43/0882 , H04L63/0227 , H04L63/0263 , H04L41/0806 , H04L43/0888 , H04L43/12 , H04L63/1433 , H04L47/31 , H04L45/38 , H04L45/66 , G06F3/0482 , G06T11/206 , H04L43/02 , H04L47/28 , H04L69/16 , H04L63/1466 , H04L45/306 , G06F16/2365 , G06F2009/45587 , G06F2009/45595 , G06F2221/033 , G06F2221/2101 , G06F2221/2105 , G06F2221/2111 , G06F2221/2115 , G06F2221/2145 , H04L67/535
摘要: An example method according to some embodiments includes receiving flow data for a packet traversing a network. The method continues by determining a source endpoint group and a destination endpoint group for the packet. The method continues by determining that a policy was utilized, the policy being applicable to the endpoint group. Finally, the method includes updating utilization data for the policy based on the flow data.
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公开(公告)号:US11871390B2
公开(公告)日:2024-01-09
申请号:US17307196
申请日:2021-05-04
发明人: Ki Bum Kwon
IPC分类号: H04W72/02 , H04W72/0453 , H04W76/14 , H04L45/302 , H04W28/02 , H04W76/27 , H04W76/11
CPC分类号: H04W72/0453 , H04L45/302 , H04W28/0278 , H04W72/02 , H04W76/14 , H04W76/27 , H04W76/11
摘要: A method of supporting a buffer status report associated with a device-to-device (D2D) communication includes: establishing an RRC connection with an eNB; receiving, by a UE, configuration information associated with a D2D communication from the eNB, the configuration information including information of a resource selection mode for a D2D data transmission, the information of a resource selection mode indicating a resource pool from which the UE selects a resource for a D2D data transmission to another UE; identifying a D2D target identity of at least one target UE to which the UE transmits D2D data by performing a D2D discovery procedure; setting an RRC message to be transmitted to the eNB, the RRC message including information of the identified D2D target identity; and transmitting the RRC message to the eNB, the information of the identified D2D target identity being transmitted through UEinformation message for a D2D data transmission.
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公开(公告)号:US20240007392A1
公开(公告)日:2024-01-04
申请号:US17853167
申请日:2022-06-29
CPC分类号: H04L45/22 , H04L45/24 , H04L45/50 , H04L45/42 , H04L45/123 , H04L45/302
摘要: In one embodiment, a device obtains quality of experience measurements for an online application having application traffic conveyed via a first path in a backbone network between an ingress point and an egress point in the backbone network. The device makes a determination that the quality of experience metrics are indicative of degraded user experience with the online application. The device causes a label switched path to be scheduled between the ingress point and the egress point in the backbone network. The device causes at least a portion of the application traffic for the online application to be sent via the label switched path instead of the first path.
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46.
公开(公告)号:US20230421703A1
公开(公告)日:2023-12-28
申请号:US18243865
申请日:2023-09-08
发明人: Joseph A. Scivicque , Adam Uzelac
IPC分类号: H04M7/00 , H04L45/302 , H04M7/12 , H04L45/12
CPC分类号: H04M7/0081 , H04M7/0075 , H04L45/302 , H04M7/12 , H04L45/12 , H04M7/009
摘要: Novel tools and techniques are provided for implementing management of routing across multiple voice or data networks with separate routing masters. In various embodiments, in response to receiving a request to establish a call between a calling party in a first network and a called party in a second network, a computing system might receive a first set of network information from a first routing database(s) that is operated by a first service provider and a second set of network information from a second routing database(s) that is operated by a second service provider separate from the first service provider; might analyze the received first and second sets of network information to generate a unified routing model for optimizing routing of the call through the first and second networks; and might establish the call through a selected optimized route based on the generated unified routing model.
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公开(公告)号:US11848864B2
公开(公告)日:2023-12-19
申请号:US17178730
申请日:2021-02-18
发明人: Doug Young Suh , Kyu Heon Kim , Gwang Hoon Park
IPC分类号: H04L69/22 , H04L45/74 , H04N19/70 , H04N19/46 , H04N19/30 , H04N19/61 , H04N19/132 , H04N19/164 , H04N19/187 , H04N19/169 , H04N21/2343 , H04N21/643 , H04N21/647 , H04N21/845 , H04L69/16 , H04L69/167 , H04L45/302
CPC分类号: H04L45/74 , H04L45/302 , H04L69/16 , H04L69/167 , H04L69/22 , H04N19/132 , H04N19/164 , H04N19/187 , H04N19/188 , H04N19/30 , H04N19/46 , H04N19/61 , H04N19/70 , H04N21/234327 , H04N21/64322 , H04N21/64792 , H04N21/8451
摘要: The construction method of NALU (Network Abstraction Layer Unit) for IPv6 label switching and its using algorithms of video encoding, QoS control, and decoding are provided. According to an embodiment of the present invention, the NALU format is composed of the NALH (Network Abstraction Layer Header) including the label and the NAL (Network Ab¬straction Layer) payload. Here, the label is determined based on layer information which is combination of a spatial scalable level, a temporal scalable level, and a quality scalable level of the encoded data. The decoder uses the label to decide which one of multiple decoding modules is used to decode the current NAL payload. Moreover, the label can be included in the packet header so that the MANE (Media Aware Network Element) can use the label to decide whether to forward the packet or drop it. For example, the label in the packet header can be used for QoS control of video service by using the flow label field in IPv6 packet header. The IPv6 router can identify priority of the video packet by using the 20 bit long flow label, into which the label in NALH can be inserted. According to the embodiment, the MANE assumed in the MPEG and JVT (Joint Video Team) can be implemented effectively.
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48.
公开(公告)号:US20230397041A1
公开(公告)日:2023-12-07
申请号:US18249223
申请日:2021-10-15
发明人: Milos TESANOVIC
IPC分类号: H04W28/02 , H04L45/302 , H04L47/724
CPC分类号: H04W28/0268 , H04W28/0284 , H04L45/302 , H04L47/724
摘要: A method of operating a multi-hop network comprises the steps of: receiving, at a second node, packet, comprising data or control signalling; calculating, at the second node, a Quality of Service, QoS, characteristic; determining, at the second node, if a Quality of Service, QoS, profile which comprises the characteristic can be guaranteed and, if the result of determining is positive, the second node determines a path and modifies the packet, if necessary, and submits a resultant packet to a next hop in the network according to the determined path; and if the result of determining is negative, the second node notifies a first node that the QoS profile cannot be guaranteed.
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公开(公告)号:US20230379266A1
公开(公告)日:2023-11-23
申请号:US18028191
申请日:2021-11-30
申请人: ZTE Corporation
发明人: Shaofu Peng
IPC分类号: H04L47/724 , H04L47/125 , H04L47/625 , H04L45/302 , H04L47/22
CPC分类号: H04L47/724 , H04L47/125 , H04L47/627 , H04L45/308 , H04L47/22
摘要: A path determination method, a network element, and a computer-readable storage medium are disclosed. The path determination method may include: acquiring link bandwidth data of all physical links within a network slice, where the link bandwidth data corresponds to the network slice, and the network slice is created by an interior gateway protocol flex algorithm (S100); acquiring a required bandwidth of a transmission channel within the network slice (S200); and determining, according to the link bandwidth data and the required bandwidth, a path for the transmission channel from among all the physical links (S300).
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公开(公告)号:US20230379264A1
公开(公告)日:2023-11-23
申请号:US18315001
申请日:2023-05-10
发明人: Yeoncheol RYOO , Taesik CHEUNG
IPC分类号: H04L47/56 , H04L45/302 , H04L43/0852
CPC分类号: H04L47/56 , H04L45/302 , H04L43/0852
摘要: The present disclosure relates generally to a communication system, and more particularly, to a method for time-deterministic packet forwarding that guarantees a maximum and minimum latency requirement of a service, the method including: receiving latency information of links and nodes on a path, and buffer resource information of the nodes; calculating, on the basis of the buffer resource information of the last node, local latency budgets that the other nodes need to guarantee; performing control so that the nodes transmit a packet on the basis of the local latency budgets; and finally guaranteeing, by the last node, a residual latency budget remaining after the nodes transmit the packet within the local latency budgets.
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