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    • 92. 发明申请
    • COMMUNICATION DEVICE AND METHOD FOR SELECTING BEAM DIRECTION
    • 通信设备和用于选择波束方向的方法
    • WO2018000405A1
    • 2018-01-04
    • PCT/CN2016/088079
    • 2016-07-01
    • INTEL IP CORPORATION
    • ZHANG, JinyuZHU, YuanNIU, HuaningMIAO, HongleiTANG, Yang
    • H04B7/02
    • A communication device is described comprising a first directional antenna and a second directional antenna which may each be set to any one of a plurality of main beam directions for radio communication, transceiver configured to determine a reception quality for at least some of the plurality of main beam directions using the first directional antenna and for at least some of the plurality of main beam directions using the second directional antenna, select a main beam direction of the plurality of main beam directions based on the reception qualities determined by the first directional antenna and based on the reception qualities determined by the second directional antenna and perform communication using the selected main beam direction.
    • 描述了包括第一定向天线和第二定向天线的通信设备,所述第一定向天线和第二定向天线可以分别被设置为用于无线电通信的多个主波束方向中的任何一个,收发器被配置为确定接收质量 多个主波束方向中的至少一些使用第一定向天线并且对于使用第二定向天线的多个主波束方向中的至少一些主波束方向,基于接收质量选择多个主波束方向中的主波束方向 由第一定向天线确定并且基于由第二定向天线确定的接收质量,并使用所选主波束方向执行通信。
    • 95. 发明申请
    • SUBFRAME STRUCTURE FOR DISCRETE FOURIER TRANSFORM (DFT) SPREAD ORTHOGONAL FREQUENCY DIVISION MULTIPLEXING (S-OFDM) WAVEFORMS
    • 用于离散傅立叶变换(DFT)扩频正交频分多路复用(S-OFDM)波形的子帧结构
    • WO2017201273A1
    • 2017-11-23
    • PCT/US2017/033310
    • 2017-05-18
    • INTEL IP CORPORATION
    • PAWAR, SameerNIU, HuaningJUNG, HyejungKUMAR, Utsaw
    • H04L27/26H04L5/00
    • Technology for a base station operable to encode guard interval (GI) discrete Fourier transform (DFT) spread orthogonal frequency-division multiplexing (OFDM) (GI-DFT-s-OFDM) data symbols for transmission to a user equipment (UE) is disclosed. The base station can identify GI-DFT-s-O 5 FDM data symbols for transmission to the UE. The base station can encode the GI-DFT-s-OFDM data symbols for transmission to the UE in a subframe. The subframe can be in accordance with a flexible subframe structure that begins with a demodulation reference signal (DMRS) sequence followed by a GI sequence in a first symbol of the subframe. The subframe can further comprise one or 10 more subsequent symbols in the subframe that each include a GI-DFT-s-OFDM data symbol followed by a GI sequence.
    • (GI)离散傅里叶变换(DFT)扩展正交频分复用(OFDM)(GI-DFT-s-OFDM)数据符号的基站技术,用于传输到 公开了一种用户设备(UE)。 基站可以识别用于传输给UE的GI-DFT-s-O 5 FDM数据符号。 基站可以在子帧中对GI-DFT-s-OFDM数据符号进行编码以传输给UE。 该子帧可以根据以子帧的第一符号中的解调参考信号(DMRS)序列跟随有GI序列开始的灵活子帧结构。 该子帧可以进一步包括子帧中的一个或多个后续符号,每个后续符号包括后跟GI序列的GI-DFT-s-OFDM数据符号。
    • 96. 发明申请
    • PHYSICAL RANDOM ACCESS CHANNEL (PRACH) DESIGN
    • 物理随机访问通道(PRACH)设计
    • WO2017196387A1
    • 2017-11-16
    • PCT/US2016/054181
    • 2016-09-28
    • INTEL IP CORPORATION
    • YE, QiaoyangJEON, JeonghoNIU, HuaningBHORKAR, Abhijeet
    • H04W74/08H04L5/00
    • Technology for an eNodeB operable to configure a physical random access channel (PRACH) to enable uplink communications by a user equipment (UE) is disclosed. The eNodeB can allocate a PRACH subframe configuration for a plurality of UEs that utilizes a Block Interleaved Frequency Division Multiple Access (B-IFDMA) subframe structure. The B-IFDMA subframe structure can comprise interlaced resource blocks (RBs) assigned to each of the plurality of UEs over a selected number of symbols. The eNodeB can decode a PRACH waveform received from one of the plurality of UEs. The UE can be configured to transmit the PRACH waveform using the PRACH subframe configuration.
    • 公开了一种用于eNodeB的技术,该eNodeB可操作来配置物理随机接入信道(PRACH)以实现用户设备(UE)的上行链路通信。 eNodeB可以为利用块交织频分多址(B-IFDMA)子帧结构的多个UE分配PRACH子帧配置。 B-IFDMA子帧结构可以包括在选定数量的符号上分配给多个UE中的每一个的隔行资源块(RB)。 eNodeB可以解码从多个UE中的一个UE接收到的PRACH波形。 UE可以被配置为使用PRACH子帧配置来发送PRACH波形。