ALLOCATION OF DATA RADIO BEARERS FOR QUALITY OF SERVICE FLOWS

    公开(公告)号:US20200382986A1

    公开(公告)日:2020-12-03

    申请号:US16947853

    申请日:2020-08-20

    Abstract: An example method can include receiving information identifying a quality of service (QoS) flow for a communication session involving a user equipment (UE). The information can include a QoS profile and a QoS flow identifier (QFI). The method can include identifying, from a QoS profile, a QoS configuration identifier associated with the QoS flow and selecting a data radio bearer (DRB) for the communications associated with the QoS flow. The DRB can be selected based on a mapping of a plurality of DRBs to a plurality of QoS flows, and the mapping can be based on corresponding QoS configuration identifiers of the plurality of QoS flows. The method can include assigning the QoS flow to the DRB by adding the QFI of the QoS flow to the mapping relative to the DRB and causing the communications associated with the QoS flow to be transmitted using the DRB.

    SYSTEMS AND METHODS FOR TUNING OF DYNAMIC SPECTRUM SHARING IN NETWORKS

    公开(公告)号:US20210266782A1

    公开(公告)日:2021-08-26

    申请号:US17302002

    申请日:2021-04-21

    Abstract: A device of a RAN may receive first traffic associated with a first network type service, second traffic associated with a second network type service, and core network data associated with a core network that provides the first network type service and the second network type service. The device may calculate a per QCI split based on the core network data, and may calculate an initial resource split based on the per QCI split. The device may provide, to a first device, data identifying the initial resource split, and may receive a traffic bias per QCI based on providing the data identifying the initial resource split. The device may calculate a final resource split for the first traffic and the second traffic based on the traffic bias per QCI, and may cause the final resource split to be implemented via resources associated with the RAN.

    ALLOCATION OF DATA RADIO BEARERS FOR QUALITY OF SERVICE FLOWS

    公开(公告)号:US20200236578A1

    公开(公告)日:2020-07-23

    申请号:US16255241

    申请日:2019-01-23

    Abstract: An example method can include receiving information identifying a quality of service (QoS) flow for a communication session involving a user equipment (UE). The information can include a QoS profile and a QoS flow identifier (QFI). The method can include identifying, from a QoS profile, a QoS configuration identifier associated with the QoS flow and selecting a data radio bearer (DRB) for the communications associated with the QoS flow. The DRB can be selected based on a mapping of a plurality of DRBs to a plurality of QoS flows, and the mapping can be based on corresponding QoS configuration identifiers of the plurality of QoS flows. The method can include assigning the QoS flow to the selected DRB by adding the QFI of the QoS flow to the mapping relative to the selected DRB and causing the communications associated with the QoS flow to be transmitted using the selected DRB.

    UNIFIED RADIO ACCESS NETWORK (RAN)/MULTI-ACCESS EDGE COMPUTING (MEC) PLATFORM

    公开(公告)号:US20200053546A1

    公开(公告)日:2020-02-13

    申请号:US16058753

    申请日:2018-08-08

    Abstract: A device can receive, from a node in a core network, application identifiers associated with applications accessible by a first user device. The application identifiers can be associated with latency requirements. The device can obtain, from the first user device, a first packet associated with a first packet flow. The device can compare information regarding the first packet flow, and the application identifiers to determine that the first packet is destined for a low-latency application having a specified latency range. The device can identify a first low-latency bearer that satisfies the specified latency range associated with the low-latency application. The device can map the first packet flow to the first low-latency bearer, and communicate packets, associated with the first packet flow, using the first low-latency bearer. The packets can include data packets communicated between an entity hosting the low-latency application and the first user device, while bypassing the core network.

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