Abstract:
Generally discussed herein are systems, apparatuses, and techniques that can offload UE traffic to a WLAN. According to an example a base station can include a transceiver configured to (1) transmit, to a UE, a first control packet to move U-Plane traffic of the UE to a WLAN or (2) receive, from the UE, a second control packet acknowledging that the U-Plane traffic of the UE is to be moved to the WLAN, or (3) transmit Control Plane (C-Plane) traffic to the UE while no U-Plane traffic of the UE is being transmitted to the UE by the transceiver. The base station can include circuitry to route U-Plane traffic of the UE to the WLAN in response to the transceiver receiving the second control packet.
Abstract:
Embodiments of systems and methods for time domain multiplexing solutions for in-device coexistence are generally described herein. Other embodiments may be described and claimed.
Abstract:
Briefly, in accordance with one or more embodiments, an apparatus of a user equipment (UE) comprises baseband circuitry including one or more processors to decode a secondary synchronization signal (SSS) or a beam reference signal (BRS) received from an evolved Node B (eNB) to select a Tier-1 sector for receiving downlink transmissions from the eNB, decode a downlink control channel message received from the eNB at one or more fixed time offsets after the UE decodes the SSS to obtain index information for the Tier-1 sector to identify the Tier-1 sector, and if the Tier-1 sector has changed initiate a random access procedure to select an updated Tier-1 sector, and generate an updated Tier-1 sector index message to report to the eNB.
Abstract:
A central trajectory controller including a cell interface configured to establish signaling connections with one or more backhaul moving cells and to establish signaling connections with one or more outer moving cells, an input data repository configured to obtain input data related to a radio environment of the one or more outer moving cells and the one or more backhaul moving cells, and a trajectory processor configured to determine, based on the input data, first coarse trajectories for the one or more backhaul moving cells and second coarse trajectories for the one or more outer moving cells, the cell interface further configured to send the first coarse trajectories to the one or more backhaul moving cells and to send the second coarse trajectories to the one or more outer moving cells.
Abstract:
Embodiments of a station (STA) and method of communication are generally described herein. The STA may be included in a first plurality of STAs affiliated with a first multi-link logical entity (MLLE). A plurality of links may be established between the first MLLE and a second MLLE, wherein the second MLLE may be affiliated with a second plurality of STAs. The STA may receive a first subset of a sequence of MAC protocol data units (MPDUs). A second subset of the sequence of MPDUs may be transmitted by another STA of the first plurality of STAs. The STA may transmit a block acknowledgement (BA) frame that includes: a number of BA bitmaps, configurable to values greater than or equal to one; and BA control information for each of the BA bitmaps.
Abstract:
Methods, apparatus, systems and machine readable storage media of a multi-access edge computing (MEC) component operating in a multi-access management services (MAMS) framework are described. In an example, traffic on multi-radio links between a user equipment (UE) and a network is observed. Based on the observing, the traffic is managed by transmitting messages of a traffic management application programming interface (API) over a dedicated reference point.
Abstract:
This disclosure describes systems, methods, and devices related to enhanced multiple access point (AP) coordination. A device may determine a first access point (AP) is an associated AP of a station device (STA). The device may identify a null data packet announce (NDPA) frame received from the first AP. The device may determine a propagation delay between the first AP and the device based on the NDPA frame. The device may identify a multi-AP trigger frame received from the first AP at a first time. The device may cause a data packet to be sent to the STA at a second time, wherein the second time is based on the propagation delay.
Abstract:
Methods, apparatus, systems and machine readable storage media of a multi-access edge computing (MEC) component operating in a multi-access management services (MAMS) framework are described. In an example, traffic on multi-radio links between a user equipment (UE) and a network is observed, Based on the observing, the traffic is managed by transmitting messages of a traffic management application programming interface (API) over a dedicated reference point.
Abstract:
System and techniques for uplink congestion mitigation are described herein. A packet acknowledgement (ACK) rate may be measured in a transmission queue to detect when the ACK rate exceeds a threshold. In response to the ACK rate exceeding the threshold, ACKs may be removed from the transmission queue in accordance with a time-based uplink reduction function. ACKs that remain in the transmission queue after ACKs are removed in accordance with the time-based uplink reduction function may then be transmitted.
Abstract:
Apparatuses of a user equipment (UE), a cellular base station, and radio access network (RAN) nodes are disclosed. An apparatus of a wireless communication device includes circuitry configured to measure reference signals received from a plurality of antennas of an other wireless communication device, and circuitry configured to cause one or more antennas of the wireless communication device to transmit information regarding the received reference signals back to the other wireless communication device to enable the other wireless communication device to estimate a utility function for different transmit parameter sets.