Abstract:
A user equipment can send a notification to a network node indicating that the user equipment is entering a battery saving mode of operation. Reduced physical layer procedures can be implemented based on reduced capabilities indicated by the user equipment. Reduced physical layer procedures can also be implemented based on the network node's reconfiguration of parameters to facilitate the activation of the reduced physical layer procedures. The user equipment can also send to the network node recommendations of reduced physical layer procedures.
Abstract:
A user equipment (UE) is described. Receiving circuitry is configured to receive downlink control information which is used for scheduling of a physical downlink shared channel and to receive, on the physical downlink shared channel, a random access response including a random access response grant. Transmitting circuitry is configured to perform, based on the random access response grant, a transmission on a physical uplink shared channel. In a case that a first value is indicated by using information included in the downlink control information, an index of a physical resource block(s) for the physical uplink shared channel is indicated by using the random access response grant. In a case that a second value is indicated by using the information included in the downlink control information, a plurality of indices of the physical resource block(s) for the physical uplink shared channel is indicated by using the random access response grant.
Abstract:
In order to reduce latency in new radio access technology (NR), a method and apparatus for configuring a pre-scheduled physical uplink shared channel (PUSCH) is proposed. A user equipment (UE) receives a configuration of the pre-scheduled PUSCH from a network, wherein the configuration includes a percentage of resource for the pre-scheduled PUSCH, and transmits UL data via the pre-scheduled PUSCH according to the percentage of resource to the network. Further, the UE receives a dynamic indication of adjusting the percentage of resource for the pre-scheduled PUSCH from the network, and transmits UL data via the pre-scheduled PUSCH according to the adjusted percentage of resource to the network.
Abstract:
Technology for a user equipment (UE) operable to perform data communication with a base station is disclosed. The UE can decode a first downlink control information (DCI) format received from the base station. The UE can decode a second DCI format received from the base station. The UE can identify resources allocated by the second DCI format that preempt resources allocated by the first DCI format that are in a same time-frequency resource. The UE can perform a data communication with the base station using the resources allocated by the first DCI format that are not preempted by the resources allocated by the second DCI format.
Abstract:
The efficiency of uplink data channels provided by a wireless cell is increased by using offset scheduling grants to control the transmission of data payloads from user equipment to the cell.
Abstract:
A user equipment (UE) is described. The UE includes a processor and memory in electronic communication with the processor. The UE configures shortened transmission time interval (sTTI) for downlink in a serving cell. The UE also determines a downlink (DL) association set for an uplink subframe. The UE further determines a shortened physical uplink control channel (SPUCCH) format or a PUCCH format used in the uplink subframe, on the basis of at least the number of downlink sTTI(s) within the DL association set.
Abstract:
Techniques are described for wireless communication. One method includes detecting a first reference signal received from a user equipment (UE) in a reference scheduled transmission burst including a plurality of contiguous transmission time intervals (TTIs) received over a shared radio frequency spectrum band; identifying a reference TTI in which the first reference signal is received; determining a contention window size usable by the UE to contend for access to the shared radio frequency spectrum band; and transmitting an indication of the determined contention window size to the UE.
Abstract:
Techniques are described for wireless communication. One method for wireless communication at a user equipment (UE) includes receiving, over the air, information indicative of at least one type of LBT procedure to perform for an uplink transmission; identifying, from the received information, the at least one type of LBT procedure to perform for the uplink transmission; and performing, for a shared spectrum, the at least one type of LBT procedure for the uplink transmission. One method for wireless communication at a network access device includes scheduling an uplink transmission of a UE in a shared spectrum, and transmitting, over the air, information indicative of at least one type of LBT procedure to perform for the uplink transmission.
Abstract translation:描述了用于无线通信的技术。 用于用户设备(UE)处的无线通信的一种方法包括通过空中接收指示要对上行链路传输执行的至少一种类型的LBT过程的信息; 从所接收的信息中识别要对所述上行链路传输执行的所述至少一种类型的LBT过程; 以及针对共享频谱执行用于所述上行链路传输的所述至少一种类型的LBT过程。 一种用于网络接入设备处的无线通信的方法包括调度共享频谱中的UE的上行链路传输,以及通过空中传输指示要为上行链路传输执行的至少一种类型的LBT过程的信息。 p >