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    • 1. 发明申请
    • SMALL CELL DISCOVERY AND MEASUREMENT IN WIRELESS MOBILE NETWORKS
    • 无线移动网络中的小细胞发现和测量
    • WO2014008665A1
    • 2014-01-16
    • PCT/CN2012/078619
    • 2012-07-13
    • RENESAS MOBILE CORPORATIONSUN, PengfeiZENG, ErlinWEI, NaGAO, ChunyanWANG, HaimingBAI, Wei
    • SUN, PengfeiZENG, ErlinWEI, NaGAO, ChunyanWANG, HaimingBAI, Wei
    • H04W24/10
    • H04W48/16H04L1/20H04W24/10
    • A cell identification procedure for small cells in wireless networks in alternative embodiments. Macro eNB may signal all user equipment (UE) to perform detection and signal quality measurement based on a single extended physical discovery channel (PDCH) transmission. UE may perform synchronization then quality-level measurement on the same PDCH signal. Alternatively, the macro eNB may signal all UE to perform the measurement based on the channel state information reference signal (CSI-RS) after synchronization and cell detection on PDCH signal. In another approach, eNB may only transmit CSI-RS upon receipt of a detection result from UE. If no new UE are entering a small cell, the cell may send CSI-RS periodically for measurement while PDCH may not be provided at all. A hybrid mode may be implemented in which UE may use either PDCH or CSI-RS for measurement, determined by UE on its own.
    • 在替代实施例中,无线网络中的小小区的小区识别过程。 宏eNB可以基于单个扩展物理发现信道(PDCH)传输来向全部用户设备(UE)发出信号进行检测和信号质量测量。 UE可以在相同PDCH信号上执行同步质量级测量。 或者,宏eNB可以基于在同步之后的信道状态信息参考信号(CSI-RS)和对PDCH信号的小区检测来向所有UE发信号执行测量。 在另一种方法中,eNB仅在从UE接收到检测结果时才发送CSI-RS。 如果没有新的UE进入小小区,则小区可以周期性发送CSI-RS进行测量,同时可能根本不提供PDCH。 可以实现混合模式,其中UE可以使用由UE独自确定的用于测量的PDCH或CSI-RS。
    • 3. 发明申请
    • METHOD, APPARATUS AND COMPUTER PROGRAM FOR CONTROLLING A USER EQUIPMENT
    • 方法,用于控制用户设备的装置和计算机程序
    • WO2013168116A2
    • 2013-11-14
    • PCT/IB2013/053750
    • 2013-05-09
    • RENESAS MOBILE CORPORATIONGAO, ChunyanZENG, ErlinTAN, ShuangMATTILA, Jari
    • GAO, ChunyanZENG, ErlinTAN, ShuangMATTILA, Jari
    • H04L5/001H04L1/0025H04L1/0027H04L1/0028H04L5/0057
    • A user equipment determines(302) from a received downlink resource allocation that an uplink data channel is reconfigured for multi-cell periodic feedback of channel state information. In response, the UE utilises (306) at least a first and a second instance of the uplink data channel to send the multi-cell periodic feedback of the channel state information. Four different triggering mechanisms (304) are disclosed by which the UE determines the reconfiguration. The UE can detect a predetermined combination of at least two fields of the resource allocation; or a value of a channel state indication request state in the resource allocation; or a predefined sequence in a field of the resource allocation; or by de-scrambling at least a portion of the resource allocation using a temporary identifier dedicated for this purpose.
    • 用户设备从接收到的下行链路资源分配确定(302)上行链路数据信道被重新配置用于信道状态信息的多小区周期性反馈。 作为响应,UE利用(306)上行链路数据信道的至少第一和第二实例来发送信道状态信息的多小区周期性反馈。 公开了四种不同的触发机制(304),UE通过该触发机制确定重新配置。 UE可以检测资源分配的至少两个字段的预定组合; 或资源分配中的信道状态指示请求状态的值; 或资源分配的字段中的预定义序列; 或者通过使用专用于此目的的临时标识符来对加密资源分配的至少一部分进行解扰。