摘要:
The disclosure pertains to configuring a physical channel monitoring occasion in a wireless network and to scheduling beam failure recovery requests by an WTRU in a CONNECTED DRX state.
摘要:
Methods, computer readable media, and apparatus for scheduling service periods (SPs) are disclosed. An apparatus includes processing circuitry where the processing circuitry is configured to encode a first physical Layer Convergence Procedure (PLCP) Protocol Data Unit (PPDU), the PPDU comprising an indication of scheduled service periods (SPs) during a beacon interval (BI) and an indication of an intended transmission of a second PPDU at the start of the scheduled service periods. The processing circuitry may be configured to encode the second PPDU, the second PPDU comprising a frame or element for the HE STAs.
摘要:
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.
摘要:
According to various implementations, a first communication node (e.g., a user equipment ("UE") or node of a carrier network, such a next generation Node B ("gNB")), schedules a second communication node for communication on multiple scheduling units (e.g., multiple slots or subframes, with each scheduling unit being set, for example at one slot per scheduling unit, two slots per scheduling unit, etc.). The first communication node transmits a first message and a second message to the second communication node. The first message includes scheduling parameters that apply to all of the multiple scheduling units, and the second message reconfigures at least one of the scheduling parameters for a subset of the multiple scheduling units.
摘要:
The present disclosure relates to a pre-5th-Generation (5G) or 5G communication system for supporting higher data rates Beyond 4th-Generation (4G) communication system such as Long Term Evolution (LTE). The present disclosure includes an operation method of a terminal in a wireless communication system, the method including checking information on at least one control resource set carrying scheduling information for scheduling remaining system information based on a master information block (MIB) received from a base station, checking the scheduling information in the at least one control resource set, and receiving the remaining system information based on the scheduling information.
摘要:
Aspects for uplink (UL) communications related to listen before talk (LBT) operations in wireless networks introduce techniques and network devices configured to enable these communications by considering contention window size adaptation and related conditions. In some aspects, a user equipment (UE) can switch between different types of LBT operations, including a complete, regular category 4 LBT operation / protocol and a single interval LBT protocol that is shorter in duration. A contention window size can be adapted independently per carrier in multi-carrier operations associated with UL transmissions that either includes or excludes carriers with the single interval LBT. In other aspects, a maximum channel occupancy time (MCOT) with multiple UL grants for different UL subframes can be utilized to determine the LBT processes for UL transmission.
摘要:
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.