Configuration of multiple measurement gap patterns

    公开(公告)号:US11558790B2

    公开(公告)日:2023-01-17

    申请号:US16518262

    申请日:2019-07-22

    Applicant: Apple Inc.

    Abstract: User equipment (UE) includes processing circuitry coupled to memory. To configure the UE for performing multiple signal quality measurements in a 5G network, the processing circuitry is to encode configuration signaling for transmission to a base station. The configuration signaling indicates the UE supports multiple measurement gap (MG) patterns in parallel. RRC signaling responsive to the configuration signaling is decoded. The RRC signaling comprising configuration information to configure the UE for multiple measurement gaps in parallel and provides SMTC for synchronization signal transmissions within the multiple measurement gaps. A plurality of SSBs is decoded using periodicity and duration information of the synchronization signal transmissions included in the SMTC, the plurality of SSBs received during the multiple measurement gaps. Multiple signal quality measurements are encoded for transmission to the base station, the multiple signal quality measurements based on the plurality of SSBs.

    DUAL DISCONTINUOUS RECEPTION (DRX) IN FREQUENCY RANGE 1 (FR1) AND FREQUENCY RANGE 2 (FR2) CARRIER AGGREGATION (CA)

    公开(公告)号:US20220377662A1

    公开(公告)日:2022-11-24

    申请号:US17267855

    申请日:2020-02-12

    Applicant: Apple Inc.

    Abstract: Techniques discussed herein can facilitate configuration of a User Equipment (UE) with two or more Discontinuous Reception (DRX) configurations. A first set of techniques can facilitate configuration of the UE with independent DRX configurations for Frequency Range 1 (FR1) and for Frequency Range 2 (FR2). A second set of techniques can facilitate configuration of the UE with independent DRX configurations for a first set of one or more Component Carriers (CCs) associated with a first frequency band of a supported band combination and for a second set of one or more CCs associated with a second frequency band of the supported band combination. Various embodiments can employ techniques of one or more of the first set of techniques or the second set of techniques.

    Techniques for NR cell/beam identification

    公开(公告)号:US11483881B2

    公开(公告)日:2022-10-25

    申请号:US17154206

    申请日:2021-01-21

    Applicant: Apple Inc.

    Abstract: Embodiments of the present disclosure describe methods, apparatuses, storage media, and systems for cell identification (ID) and beam ID detections in new radio (NR). The detections comprise NR primary synchronization signal (PSS)/secondary synchronization signal (SSS) detection, PBCH DMRS detection, SS reference signal received power (RSRP) measurement, and slot/SS burst boundary timing acquiring. Various embodiments describe how to detect a cell ID and a beam ID in millimeter wave (mmWave) operation. Other embodiments describe further details regarding how to detect NR cell and beam ID during intra-frequency measurements.

    Radio link monitoring (RLM) enhancements

    公开(公告)号:US11483082B2

    公开(公告)日:2022-10-25

    申请号:US17284231

    申请日:2019-10-09

    Applicant: Apple Inc.

    Abstract: Methods, systems, and storage media are described for the Embodiments discussed herein may relate to enhancements to radio link monitoring (RLM) for new radio (NR) systems. A user equipment (UE) may be configured to retrieve configuration information from a memory. The UE may further determine, based on the configuration information, that a radio link monitoring-reference signal (RLM-RS) resource is configured for quasi co-location (QCL) Type D with more than one control resource set (CORESET), and determine, based on the RLM-RS resource being configured for QCL Type D with more than one CORESET, a physical downlink control channel (PDCCH) parameter for radio link monitoring (RLM). Other embodiments may be described and/or claimed.

    Dynamic Configuration of Aperiodic Sounding Reference Signal Offsets in Cellular Communications Systems

    公开(公告)号:US20220303088A1

    公开(公告)日:2022-09-22

    申请号:US17439059

    申请日:2020-10-12

    Applicant: Apple Inc.

    Abstract: A cellular base station (BS) which determines an aperiodic sounding reference signal (SRS) triggering offset configuration specifying an offset between an aperiodic SRS trigger received by a user equipment (UE) and transmission of the SRS by the UE. The cellular base station may determine that the SRS triggering offset should be adjusted. In response, the cellular base station may transmit signaling to the UE specifying a new value for the aperiodic SRS triggering offset. The new SRS triggering offset value may be partly based on a minimum timing offset for the UE and may be contained in a medium access control (MAC) control element (CE) or in downlink control information (DCI). Additionally, the new triggering offset value may be applicable for a plurality of component carriers or bandwidth parts. The cellular base station may also determine a new triggering offset value due to conflicts regarding the AP-SRS transmission.

    Cross-Cell Beam Failure Recovery
    99.
    发明申请

    公开(公告)号:US20220302986A1

    公开(公告)日:2022-09-22

    申请号:US17442108

    申请日:2020-08-04

    Applicant: Apple Inc.

    Abstract: This disclosure relates to performing beam failure recovery during an inter-cell connection involving a UE in communication with one or more base stations in a cellular communication system. In various embodiments, a user equipment determines one or more beam failures by monitoring one or more reference signals transmitted by one or more base stations, where the UE is connected to the one or more base stations. The UE further performs candidate beam detection by monitoring at least one candidate reference signal that is transmitted by one or more candidate base stations, where at least one candidate base station (a first candidate base station) is different from the one or more base stations to which the UE was previously communicating. The UE selects the first candidate base station based on the candidate beam detection, and transmits a beam failure recovery request (BFRQ) message to the first candidate base station based on the selection.

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