CODEBOOK SUBSET RESTRICTION FOR CSI
    12.
    发明申请

    公开(公告)号:US20200186207A1

    公开(公告)日:2020-06-11

    申请号:US16609294

    申请日:2018-06-04

    Abstract: Network devices and systems in 5G advance long term evolution (LTE) and new radio (NR) infrastructures utilize beam management operations to ensure communications for channel state information (CSI) reporting by a user equipment (UE). CSI report configuration reporting settings are processed based on a codebook subset restriction to indicate pre-coding matrix indicators (PMIs) that are restricted and non-restricted for PMI reporting associated with a rank indicator (RI). Based on the codebook subset restriction, an advanced CSI codebook or a new radio (NR) codebook is generated to be transmitted on non-restricted beams of the codebook subset restriction.

    SYSTEMS AND METHODS FOR ENHANCED MBMS WITH MIMO SUPPORT
    17.
    发明申请
    SYSTEMS AND METHODS FOR ENHANCED MBMS WITH MIMO SUPPORT 审中-公开
    用于MIMO支持的增强MBMS的系统和方法

    公开(公告)号:US20160254920A1

    公开(公告)日:2016-09-01

    申请号:US14865238

    申请日:2015-09-25

    Abstract: Systems and methods use multiple spatial layers for physical multicast channel transmission. Certain embodiments introduce additional multimedia broadcast multicast service reference signals that support more than one antenna ports for multicast broadcast single frequency network transmissions. To reduce channel estimation complexity due to the multicast broadcast single frequency network reference signal design, resource elements of the multicast broadcast single frequency network reference signals may have a nested structure. To assist modulation and coding scheme selection, a user according to certain embodiments also independently reports block error rate measurements for each spatial layer of the multicast channel.

    Abstract translation: 系统和方法使用多个空间层进行物理多播信道传输。 某些实施例引入了支持多于一个天线端口用于多播广播单频网络传输的附加多媒体广播多播服务参考信号。 为了降低由多播广播单频网参考信号设计引起的信道估计复杂度,组播广播单频网参考信号的资源元素可能具有嵌套结构。 为了辅助调制和编码方案选择,根据某些实施例的用户还独立地报告组播信道的每个空间层的块错误率测量。

    MECHANISM FOR 256-QAM CAPABLE USER EQUIPMENT TO OPERATE SEAMLESSLY WITH A NODE
    18.
    发明申请
    MECHANISM FOR 256-QAM CAPABLE USER EQUIPMENT TO OPERATE SEAMLESSLY WITH A NODE 审中-公开
    用于256-QAM能力的用户设备无缝操作的机制

    公开(公告)号:US20150256287A1

    公开(公告)日:2015-09-10

    申请号:US14716846

    申请日:2015-05-19

    Abstract: Described is a UE to communicate with an eNB on a network, the UE comprising: an antenna to receive messaging from eNB indicating switching to 256-QAM scheme from an existing non-256-QAM scheme; and a table component for storing soft channel bits based on Nsoft such that the number and value of the soft channel bits for using the 256-QAM scheme is substantially equal to the number and value of the soft channel bits when the UE is not using the 256-QAM scheme. Described is an eNB comprising: an antenna to transmit messaging to a UE indicating switching to 256-QAM scheme from an existing non-256-QAM scheme; and an encoder to encode data using memory usage size based on Nsoft such that the number and value of the Nsoft for using the 256-QAM scheme is substantially equal to the number and value of the Nsoft when the eNB is not using the 256-QAM scheme.

    Abstract translation: 描述了UE在网络上与eNB进行通信,该UE包括:天线,用于从现有的非256-QAM方案接收指示从256-QAM方案切换到256-QAM方案的消息; 以及用于存储基于Nsoft的软信道比特的表组件,使得当UE不使用该方式时,用于使用256-QAM方案的软信道比特的数量和值基本上等于软信道比特的数量和值 256-QAM方案。 描述了一种eNB,包括:天线,用于向UE发送消息,指示从现有的非256-QAM方案切换到256-QAM方案; 以及使用基于Nsoft的存储器使用大小对数据进行编码的编码器,使得用于使用256-QAM方案的Nsoft的数量和值基本上等于当不使用256-QAM时Nsoft的数量和值 方案。

    FULL DUPLEX SUPPORT IN FIFTH GENERATION (5G) SYSTEMS

    公开(公告)号:US20190059099A1

    公开(公告)日:2019-02-21

    申请号:US16079854

    申请日:2016-06-23

    Abstract: Techniques for full duplex operation of base stations and/or user equipments (UEs) are discussed. One example embodiment comprises one or more processors of a UE configured to: process control messages that comprise a downlink assignment for the UE and an uplink grant for the UE during a subframe in a frequency band, wherein the downlink assignment indicates a first set of UE subarrays, and wherein the uplink grant indicates a second set of UE subarrays; process downlink data received via transceiver circuitry via the first set of UE subarrays, wherein the downlink data is received from a first base station during the subframe via the frequency band; and output uplink data to the transceiver circuitry for transmission via the second set of UE subarrays, wherein the uplink data is output for transmission to a second base station during the subframe via the frequency band.

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