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    • 1. 发明专利
    • Cellular telecommunications network
    • GB2566103A
    • 2019-03-06
    • GB201714232
    • 2017-09-05
    • BRITISH TELECOMM
    • RICHARD MACKENZIEANVAR TUKMANOVMICHAEL FITCHKEITH BRIGGS
    • H04W36/00H04B7/155H04W36/20H04W36/32H04W72/08
    • A first base station, BS 10, in communication with both a first cellular core networking node and a second mobile BS 20 (Relay Node, RN, moving wireless network, e.g. in a train or car), the second BS in communication with the first BS (a donor BS) and with User Equipment, UE, wherein the UE’s user traffic is transmitted via the first and second BS, comprising: determining an identity of a third 30 and fourth 40 BSs, wherein an overlap of the third and fourth BS’ respective coverage areas cover a route of the second BS; determining a time of arrival of the second BS within the overlap; determining a first configuration parameter of the third BS and a second configuration parameter of the fourth BS in advance of the second BS’s time of arrival; based on the determined first configuration parameter of the third BS, initiating a handover of the second BS to the third BS; and configuring a transmission of the second BS based on the determined second configuration parameter of the fourth BS. Configuration parameters selected to optimise second BS’s performance (i.e. to mitigate any negative impact on second BS’s performance; minimise interference with the third BS’s neighbours).
    • 7. 发明专利
    • Moving cell backhaul coordination
    • GB2565559B
    • 2022-03-30
    • GB201713088
    • 2017-08-15
    • BRITISH TELECOMM
    • ANVAR TUKMANOVAYGUL GARIFULLINA
    • H04W84/00B64C39/02H04B7/185H04W84/18
    • A moveable wireless access point device 10 is arranged to move autonomously to a location requiring improved wireless coverage E. The moveable wireless access point, AP, scans for transmissions from another wireless communications access point 1. The moveable wireless AP device 10 determines a direction in which the quality of the coverage from the other wireless AP 1 decreases and the moveable wireless AP moves in the determined direction. The moveable wireless AP device may identify a location at which it is at the limit of coverage provided by the other wireless AP and may then initiate operation as an access point. The moveable wireless AP device may establish a backhaul relay connection via the other wireless AP. The moveable wireless AP device may have a directional antenna. There may be several of the moveable wireless AP devices all providing a relay network by communicating with each other. In another aspect of the invention the moveable wireless AP device is part of an autonomous vehicle. The autonomous vehicle may be deployed on the ground, in the air (e.g. drones or UAVs) or in the water.
    • 9. 发明专利
    • Network slice subnet instance configuration
    • GB2598896B
    • 2022-10-19
    • GB202014268
    • 2020-09-10
    • BRITISH TELECOMM
    • ANVAR TUKMANOV
    • H04W24/02H04L41/0893H04L41/0895H04L41/5041H04W48/18
    • A method of configuring a network slice subnet instance on a radio access node comprises; receiving transceiver data identifying one or more properties of the radio access node (e.g. number of transmitters/receivers, node type, computational capacity), processing the transceiver data to determine capabilities of the radio access node wherein the capabilities indicate, for a plurality of different counts of network slice subnet instances, a set of operating values (which may be selected to satisfy a service level agreement (SLA)) for one or more operating parameters (e.g. gain, capacity, operating distance, reliability, latency), and selecting and configuring, based on the determined capabilities, a count of network slice subnet instances to implement on the radio access node and the operating values for operating parameters for each network slice subnet instance. Based on the determined operating values, the method may comprise an allocation of the radio access node’s resources (e.g. transmitters, receivers, bandwidth, transmission window) to the network slice subnet instances. The radio access node may be a massive Multiple Input Multiple Output (massive MIMO) node.
    • 10. 发明专利
    • Network slice subnet instance configuration
    • GB2598896A
    • 2022-03-23
    • GB202014268
    • 2020-09-10
    • BRITISH TELECOMM
    • ANVAR TUKMANOV
    • H04W24/02H04W48/18
    • A method of configuring a network slice subnet instance on a radio access node comprises; receiving transceiver data identifying one or more properties of the radio access node (e.g. number of transmitters/receivers, node type, computational capacity), processing the transceiver data to determine capabilities of the radio access node wherein the capabilities indicate, for a plurality of different counts of network slice subnet instances, a set of operating values (which may be selected to satisfy a service level agreement (SLA)) for one or more operating parameters (e.g. gain, capacity, operating distance, reliability, latency), and selecting and configuring, based on the determined capabilities, a count of network slice subnet instances to implement on the radio access node and the operating values for operating parameters for each network slice subnet instance. Based on the determined operating values, the method may comprise an allocation of the radio access node’s resources (e.g. transmitters, receivers, bandwidth, transmission window) to the network slice subnet instances. The radio access node may be a massive Multiple Input Multiple Output (massive MIMO) node.