ACCESS TERMINAL RADIO LINK MONITORING (RLM) ON A SHARED COMMUNICATION MEDIUM

    公开(公告)号:US20180160328A1

    公开(公告)日:2018-06-07

    申请号:US15828002

    申请日:2017-11-30

    Abstract: Techniques for access terminal radio link monitoring on a shared communication medium are disclosed. In an aspect, an access terminal detects a missed reference signal event associated with a radio link established on the shared communication medium, wherein detecting the missed reference signal event comprises determining that the access terminal did not detect a reference signal for measuring a quality of the radio link transmitted during a reference signal configuration window, assigns an error metric to the missed reference signal event based on reference signal monitoring capabilities of the access terminal, and triggers a radio link failure based on the assigned error metric. In an aspect, the missed reference signal event may be a missed Discovery Reference Signaling (DRS) event, the error metric may be a Block Error Rate (BLER) weight, and the reference signal for measuring the quality of the radio link comprises a Cell-specific Reference Signal (CRS).

    MULTI-RADIO COEXISTENCE
    5.
    发明申请
    MULTI-RADIO COEXISTENCE 有权
    多无线电共享

    公开(公告)号:US20160309494A1

    公开(公告)日:2016-10-20

    申请号:US15181316

    申请日:2016-06-13

    CPC classification number: H04W72/1215 H04W52/243 H04W72/1231 H04W88/06

    Abstract: A method of wireless communication includes adjusting a channel quality indicator (CQI) to compensate for coexistence interference experienced between communication resources (such as an LTE radio and a Bluetooth radio). The CQI may be set to zero, falsely indicating to a serving enhanced NodeB that a UE is out of range, thereby creating a gap in LTE operation that may be used by an alternate radio access technology. To compensate for fluctuating interference, the CQI may be adjusted to incorporate average coexistence interference over a period of time. Alternatively, the CQI at a time may incorporate coexistence interference regardless of whether interference is experienced at that specific time. A CQI value may also be boosted to compensate for a CQI backoff. CQI may be adjusted to avoid a spiral of death effect.

    Abstract translation: 一种无线通信方法包括调整信道质量指示符(CQI)以补偿通信资源(例如LTE无线电和蓝牙无线电)之间经历的共存干扰。 CQI可以被设置为零,向服务增强型节点B虚拟地指示UE超出范围,从而在可能由替代无线电接入技术使用的LTE操作中产生间隙。 为了补偿波动的干扰,可以调整CQI以在一段时间内并入平均共存干扰。 或者,无论在该特定时间是否经历干扰,一次的CQI可以并入共存干扰。 还可以提升CQI值以补偿CQI回退。 可以调整CQI以避免死亡效应的螺旋。

    NEW RADIO HIGH-SPEED TRAIN MODE DETERMINATION AND FALSE ALARM SUPPRESSION

    公开(公告)号:US20240414516A1

    公开(公告)日:2024-12-12

    申请号:US18698766

    申请日:2021-12-10

    Abstract: Aspects are provided which allow a UE to apply new radio high-speed train mode determination and false alarm suppression in HST deployments. The UE combines a plurality of indications associated with a high-speed train (HST) mode detection into a consolidated HST mode configuration signal. The UE determines whether to suppress the consolidated HST mode configuration signal based on a mobility metric of the UE and a plurality of thresholds. The UE transitions into a HST mode when the consolidated HST mode configuration signal is not suppressed based on the mobility metric of the UE exceeding at least one of the plurality of thresholds. As a result, false HST mode flags may be avoided and HST mode detection success rates may thereby be improved.

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