EARLY SLEEP STATE FOR CIRCUITRY ASSOCIATED WITH SYNCHRONIZATION WAKEUP PERIODS

    公开(公告)号:US20230024081A1

    公开(公告)日:2023-01-26

    申请号:US17380910

    申请日:2021-07-20

    Abstract: Disclosed are techniques for wireless communication. In an aspect, during a first synchronization wakeup period while RF circuitry and the FW circuitry are set to an active state, one or more measurements of one or more SSBs of a first SSBS from a base station. The UE predicts, during the first synchronization wakeup period while the RF circuitry and the FW circuitry are in the active state, a second SSBS at which to wake up for a second synchronization wakeup period based on the one or more measurements. In response to completion of FW post-processing operations, the UE transitions the RF circuitry and the FW circuitry from the active state to a sleep state.

    TIMING-AWARE SCHEDULING
    4.
    发明申请

    公开(公告)号:US20220417915A1

    公开(公告)日:2022-12-29

    申请号:US17304915

    申请日:2021-06-28

    Abstract: Wireless communications systems and methods related to monitoring and/or measuring synchronization signal blocks (SSBs) in one or more beam directions based on timing offsets associated with the beam directions are provided. In some aspects, a method of wireless communication performed by a user equipment (UE) includes: receiving, from a wireless communication device, a synchronization signal block (SSB); and measuring, based on timing offsets for each of a plurality of beams of the SSB, one or multiple beams of the SSB. In some instances, the UE determines a number of beams of the SSB to measure based on the timing offsets for each of the plurality of beams of the SSB.

    PERIODIC CHANNEL STATE INFORMATION REFERENCE SIGNAL BEAM MANAGEMENT SCHEDULING

    公开(公告)号:US20210376907A1

    公开(公告)日:2021-12-02

    申请号:US17332517

    申请日:2021-05-27

    Abstract: Various aspects of the present disclosure generally relate to wireless communication. In some aspects, a user equipment (UE) may measure, using one or more receive beams, a channel state information reference signal (CSI-RS) transmitted on a transmit beam of the CSI-RS according to a beam management configuration for periodic CSI-RSs, where the UE performs measurements according to a static beam sweeping schedule or a dynamic beam sweeping schedule associated with the transmit beam of the CSI-RS based at least in part on the beam management configuration. In some aspects, the UE may transmit a measurement report indicating one or more measurements of the CSI-RS based at least in part on measuring the CSI-RS. Numerous other aspects are provided.

    SYSTEM AND METHOD FOR DETERMINATION OF A DYNAMIC BEAM LIST

    公开(公告)号:US20200383097A1

    公开(公告)日:2020-12-03

    申请号:US16775213

    申请日:2020-01-28

    Abstract: A UE may be configured to select narrower or wider beams that may be suitable for use with a current UE mobility, scattering environment, etc. The UE may track changes to an identified beam of a certain width, and so may recover from tracking or other radio link failures by switching to a beam that is spatially adjacent or to a beam of a different width. The UE may identify a first beam associated with a first beam width based on at least one reference signal received by the UE. The UE may further determine a set of beams based on the first beam width that is associated with the identified first beam, and the determined set of beams may include at least one beam corresponding to the first beam width. The UE may further measure respective channel qualities associated with each beam of the determined set of beams.

    THERMAL MITIGATION IN USER EQUIPMENT HAVING MULTIPLE COMMUNICATION MODULES

    公开(公告)号:US20240114497A1

    公开(公告)日:2024-04-04

    申请号:US18539039

    申请日:2023-12-13

    CPC classification number: H04W72/0453 G01K3/005 H04W72/51 H04W72/541 H04W88/02

    Abstract: In some aspects, the present disclosure provides methods, apparatuses, and systems for efficient thermal mitigation while maintaining wireless device performance on a primary component carrier (PCC). Embodiments described may include implementation of target transceiver module configurations, where bandwidth (e.g., PCC bands and secondary component carrier (SCC) bands) may be monitored by a wireless device based on intra-module target configurations and/or inter-module target configurations. An intra-module target configuration may include a target transceiver module monitoring both PCC bands and SCC bands. An inter-module target configuration may include or refer to a plurality of target transceiver modules together monitoring PCC bands and SCC bands. In scenarios where operating temperatures exceed temperature thresholds, target transceiver module configurations may be implemented to transition PCC bands, SCC bands, or both, from a PCC-resident transceiver module to another transceiver module to reduce the operating temperatures of concern. Various additional and alternative aspects are described herein.

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