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    • 1. 发明申请
    • METHOD OF TDM IN-DEVICE COEXISTENCE INTERFERENCE AVOIDANCE
    • TDM设备共存干扰避免的方法
    • WO2012041255A1
    • 2012-04-05
    • PCT/CN2011/080479
    • 2011-09-30
    • MEDIATEK SINGAPORE PTE. LTD.LIN, Kuhn-ChangFU, I-KangSU, York-Ted
    • LIN, Kuhn-ChangFU, I-KangSU, York-Ted
    • H04W16/14H04B7/26H04B1/04
    • H04W28/044H04W72/0446H04W72/1215H04W74/085H04W76/28H04W88/06
    • A method of TDM in-device coexistence (IDC) interference avoidance is proposed. In a wireless communication device, a first radio module is co-located with a second radio module in the same device platform. The first radio module obtains traffic and scheduling information of the second radio module. The first radio module then determines a desired TDM pattern based on the traffic and scheduling information to prevent IDC interference with the second radio module. The first radio module also transmits TDM coexistence pattern information based on the desired TDM pattern to a base station. In one embodiment, the TDM coexistence pattern information comprises a recommended TDM pattern periodicity and a scheduling period to maximize IDC efficiency subject to limited level of IDC interference possibility. In one specific example, the TDM coexistence pattern information comprises a set of discontinuous reception (DRX) configuration parameters defined in long-term evolution (LTE) 3GPP standards.
    • 提出了一种TDM设备共存(IDC)干扰避免的方法。 在无线通信设备中,第一无线电模块与同一设备平台中的第二无线电模块共同定位。 第一无线电模块获得第二无线电模块的业务和调度信息。 然后,第一无线电模块基于业务和调度信息确定期望的TDM模式,以防止IDC与第二无线电模块的干扰。 第一无线电模块还将基于期望的TDM模式的TDM共存模式信息发送到基站。 在一个实施例中,TDM共存模式信息包括推荐的TDM模式周期性和调度周期,以在受到IDC干扰可能性有限的情况下最大化IDC效率。 在一个具体示例中,TDM共存模式信息包括在长期演进(LTE)3GPP标准中定义的一组不连续接收(DRX)配置参数。
    • 2. 发明申请
    • METHODS AND APPARATUS FOR DECODING DL PHY CHANNELS IN A NARROW BAND SYSTEM
    • 用于在窄带系统中解码DL PHY信道的方法和装置
    • WO2017054771A1
    • 2017-04-06
    • PCT/CN2016/101145
    • 2016-09-30
    • MEDIATEK SINGAPORE PTE. LTD.SUN, FeifeiZHANG, LeiLIN, Kuhn-ChangTSAI, Jeng-YiLI, Xiu-Sheng
    • SUN, FeifeiZHANG, LeiLIN, Kuhn-ChangTSAI, Jeng-YiLI, Xiu-Sheng
    • H04W72/04
    • H04L5/0053
    • Apparatus and methods are provided for decoding DL PHY channels in a narrow band wireless system. In one novel aspect, the UE performs a cell search and determines a first location of a resource block carrying system signals, obtains a second location of a second resource block based on the first resource block, wherein the second resource block includes a format indicator, determines a DL transmission format based on the format indicator, and receives and decodes a first DL physical channel based on the DL transmission format. In one embodiment, the UE operates in either a standalone mode, an in-band mode, or a guard-band mode. The DL transmission format comprises an offset index from a middle/central frequency of the first resource block in the in-band mode or the guard-band mode. In another embodiment, the UE further decodes a second DL physical channel carrying the format indicator.
    • 提供了用于对窄带无线系统中的DL PHY信道进行解码的装置和方法。 在一个新颖的方面,UE执行小区搜索并确定承载系统信号的资源块的第一位置,基于第一资源块获得第二资源块的第二位置,其中第二资源块包括格式指示符, 基于格式指示符确定DL传输格式,并且基于DL传输格式接收并解码第一DL物理信道。 在一个实施例中,UE以独立模式,带内模式或保护带模式操作。 DL传输格式包括来自带内模式或保护带模式的第一资源块的中间/中心频率的偏移索引。 在另一个实施例中,UE还对携带格式指示符的第二DL物理信道进行解码。
    • 3. 发明申请
    • TWO-STEP UPLINK SYNCHRONIZATION FOR PICO/FEMTOCELL
    • PICO / FEMTOCELL的两步上行同步
    • WO2011082689A1
    • 2011-07-14
    • PCT/CN2011/070103
    • 2011-01-07
    • MEDIATEK INC.LIAO, Pei-KaiCHEN, Yih-ShenLIN, Kuhn-ChangSU, York-Ted
    • LIAO, Pei-KaiCHEN, Yih-ShenLIN, Kuhn-ChangSU, York-Ted
    • H04W56/00
    • H04W56/0045H04W28/04H04W48/08H04W48/16H04W56/0015H04W84/045
    • A two-step uplink synchronization method is provided for uplink synchronization between a mobile station and a pico/femto base station that is deployed together with an overlay macro/micro base station. In a first step, the pico/femto BS encodes and broadcasts UL transmission timing advance offset information via a broadcast channel. The MS decodes the received UL transmission timing advance offset information and advances its uplink timing for uplink ranging or reference signal transmission based on the decoded offset value. In a second step, the MS and the pico/femto BS performs regular uplink synchronization and uplink access. In one example, the UL transmission timing advance offset information indicates a round-trip propagation time of radio signals between the pico/femto base station and the overlay macro/micro base station. By using the two-step uplink synchronization method, a unified synchronous ranging channel may be used for ranging and UL access in pico/femtocells with reduced interference.
    • 提供了两步上行同步方法,用于与覆盖宏/微基站一起部署的移动台和微微/毫微微基站之间的上行链路同步。 在第一步中,微微/毫微微BS经由广播信道编码和广播UL传输定时提前偏移信息。 MS对所接收的UL传输定时提前偏移信息进行解码,并基于解码的偏移值推进其上行链路测距或参考信号传输的上行链路定时。 在第二步中,MS和微微/毫微微BS执行常规的上行链路同步和上行链路接入。 在一个示例中,UL传输定时提前偏移信息指示微微/毫微微基站和重叠宏/微基站之间的无线电信号的往返传播时间。 通过使用两步上行同步方法,统一的同步测距信道可以用于具有减小的干扰的微微/毫微微小区中的测距和UL接入。