Paging based on cross-slot scheduling

    公开(公告)号:US12262347B2

    公开(公告)日:2025-03-25

    申请号:US17652671

    申请日:2022-02-25

    Abstract: A first user equipment (UE) that does not support cross-slot scheduling (CSS) and a second UE that supports the CSS may share a paging occasion (PO), and a base station that supports CSS may configure a set of variable K0 greater than zero to the second UE. The base station may page both the first UE and the second UE in the shared PO by transmitting a first paging message for the first UE in the shared PO with K=0, and transmitting a second paging message for the second UE transmitted in the subsequent PO. The first UE may receive a paging scheduling physical downlink control channel (PDCCH) with K0=0 in the shared PO and monitor consecutive POs subsequent to the shared PO to receive the paging message. The base station may also assign separate sets of POs to the CSS-capable UE and the CSS-incapable UE.

    Code block group based multiplexing
    252.
    发明授权

    公开(公告)号:US12218878B2

    公开(公告)日:2025-02-04

    申请号:US18356511

    申请日:2023-07-21

    Abstract: Methods, systems, and devices for wireless communications are described. A user equipment (UE) may identify a payload for inclusion in an uplink transmission. The UE may organize the payload into a code block group (CBG) that includes one or more code blocks (CB). The UE may map each CB of the CBG to a corresponding uplink shared channel resource unit (e.g., a physical uplink shared channel resource unit) of an uplink transmission occasion of the first UE. The uplink transmission occasion may also be shared with one or more additional UEs such that the CBG of the first UE is multiplexed with additional CBGs from the additional UEs. The UE may transmit, to a base station, the uplink transmission including each uplink shared channel resource unit on which the CBG is organized.

    Secondary cell dormancy using dormancy profile

    公开(公告)号:US12213074B2

    公开(公告)日:2025-01-28

    申请号:US17754264

    申请日:2019-11-07

    Abstract: Various aspects of the present disclosure generally relate to wireless communication. In some aspects, a user equipment may receive bandwidth part configuration information configuring a dormancy profile for a first bandwidth part of a plurality of bandwidth parts; communicate, on a second bandwidth part, a plurality of types of signaling; and communicate, on the first bandwidth part, a subset of the plurality of types of signaling, such that at least one type of signaling, of the plurality of types of signaling, is suppressed in accordance with the dormancy profile. Numerous other aspects are provided.

    Considerations for a random access response for a two-step random access procedure

    公开(公告)号:US12160901B2

    公开(公告)日:2024-12-03

    申请号:US18306307

    申请日:2023-04-25

    Abstract: Various aspects of the present disclosure generally relate to wireless communication. A user equipment (UE) may transmit a random access message including a preamble and a payload. A base station may detect the preamble of the random access message. The base station, and may fail or succeed to decode the payload of the random access message. The base station may transmit, based at least in part on detecting the preamble and the different decoding outcome for the payload, a random access response. The random access response may include an uplink group grant and an indication for a type of the uplink group grant for a plurality of UEs whose preamble transmission share the same time and frequency occasion. UEs may monitor the type and the contents of the uplink group grant and transmit data subsequently on a set of shared time frequency resources. Numerous other aspects are provided.

    PARTIAL UPLINK TRANSMISSION FOR MULTIPLE UPLINK TRANSPORT BLOCKS

    公开(公告)号:US20240267923A1

    公开(公告)日:2024-08-08

    申请号:US18165687

    申请日:2023-02-07

    CPC classification number: H04W72/23 H04L1/0008 H04L5/0055 H04B7/0626

    Abstract: Methods, systems, and devices for wireless communications are described that provide for transmitting two or more transport blocks in an uplink transmission, in which a transmitting device may skip transmissions in some portion of a set of allocated resources for the transport blocks. Uplink data may be encoded to be transmitted via the multiple transport blocks, where a first transport block may have first transport block size that is different than a second transport block size of a second transport block. The transport block sizes may be less than the size of the set of allocated resources, and the transport blocks may be transmitted via the different transmission layers, and a portion of the allocated resources may be unused. The transmitting device may provide an indication of the unused resources for use in decoding the transport blocks.

    BEAM FAILURE DETECTION MEASUREMENT RELAXATION FOR CELLS WITH MULTIPLE TRANSMISSION RECEPTION POINTS

    公开(公告)号:US20240259851A1

    公开(公告)日:2024-08-01

    申请号:US18163109

    申请日:2023-02-01

    Inventor: Linhai He

    CPC classification number: H04W24/10 H04L5/0051

    Abstract: Methods, systems, and devices for wireless communications are described. In some examples, a user equipment (UE) may receive a control message indicating one or more parameters for measuring multiple reference signals. The one or more parameters may be associated with adjusting one or more measurement periodicities. The UE may measure respective channel quality metrics for the multiple reference signals, where the multiple reference signals includes a first set of reference signals associated with a first transmission reception point. The UE may adjust a measurement periodicity for the first set of reference signals according to a first parameter of the one or more parameters based on a first channel quality metric associated with the first set of reference signals, where the measurement periodicity for the first set of reference signals is separately adjustable relative to a measurement periodicity for the second set of reference.

    Waveform configuration and indication for uplink transmission

    公开(公告)号:US12035374B2

    公开(公告)日:2024-07-09

    申请号:US17441707

    申请日:2020-03-20

    CPC classification number: H04W74/0833 H04L5/0051 H04W48/10

    Abstract: Wireless communications systems may support flexible waveform configuration for autonomous uplink transmissions. A base station may transmit broadcast signaling (e.g., a system information block (SIB)) indicating waveform configuration information for an autonomous uplink transmission by a user equipment (UE). In some cases, the broadcast signaling may include a waveform configuration field (WCF) that may indicate whether flexible waveforms for autonomous uplink are supported, may configure a waveform type, may indicate waveform configuration mapping rules, etc. As such, a UE may identify whether flexible waveform configuration for autonomous uplink is supported, and may determine waveform types for autonomous uplink transmissions based on waveform type configuration information from a base station (e.g., which may include an indication of whether flexible waveform configuration is supported, an indication of waveform type/scenario mapping rules, etc.), one or more LUTs, identified autonomous uplink scenarios, autonomous uplink transmission parameters, or some combination thereof.

    Floating SMTC for SSB-based RRM in asynchronous networks

    公开(公告)号:US11991651B2

    公开(公告)日:2024-05-21

    申请号:US17286750

    申请日:2019-10-19

    CPC classification number: H04W56/001 H04W24/08

    Abstract: Certain aspects of the present disclosure provide techniques for a floating synchronization signal block measurement timing configuration (SMTC) for SSB-based radio resource management (RRM) in asynchronous networks, such as new radio (NR). A base station (BS) determines a floating SMTC for measurement of a target cell and provides the floating SMTC to at least one user equipment (UE) in the serving cell, wherein the target cell and the serving cell are asynchronous. The BS determines a measurement gap that covers the floating SMTC. The UE monitors in the measurement gap for a SSB transmission of the target cell based on the floating SMTC.

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