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    • 2. 发明授权
    • Adaptive scheme to determine the sub-carrier spacing for multi-carrier systems
    • 用于确定多载波系统的子载波间隔的自适应方案
    • US08432984B2
    • 2013-04-30
    • US13057451
    • 2008-08-04
    • Xiaobo ZhangNi Ma
    • Xiaobo ZhangNi Ma
    • H04K1/10H04L27/28
    • H04L27/2602H04L5/0007H04L5/0037H04L27/2636H04L27/265
    • Orthogonal Frequency Division Multiplexing (OFDM) is a typical multi-carrier technique that has been applied by many advanced wireless communication systems, e.g., 3GPP Long Term Evolution (LTE) and WiMAX. In order to support high mobility transmission, the sub-carrier spacing of multi-carrier systems is made large enough to overcome the Doppler frequency offset. However, this large sub-carrier spacing results in lower transmission efficiency since the CP (Cyclic Prefix) consumes a considerable of radio resources. The present invention provides an adaptive scheme to determine the sub-carrier spacing in which the default sub-carrier spacing is set to support lower mobility, while the adaptively adjusted sub-carrier spacing based on User Equipment (UE) mobile velocities is set to support higher mobility.
    • 正交频分复用(OFDM)是一种典型的多载波技术,已经被许多先进的无线通信系统应用,例如3GPP长期演进(LTE)和WiMAX。 为了支持高移动性传输,多载波系统的子载波间隔足够大以克服多普勒频率偏移。 然而,由于CP(循环前缀)消耗相当多的无线电资源,所以这种大的子载波间隔导致较低的传输效率。 本发明提供一种自适应方案,用于确定其中默认子载波间隔被设置为支持较低移动性的子载波间隔,而基于用户设备(UE)移动速度的自适应调整的子载波间隔被设置为支持 更高的流动性
    • 8. 发明申请
    • METHOD AND APPARATUS FOR PILOT CAPTURE FOR WIRELESS INTERSYSTEM HANDOVER
    • 用于无线互联系统切换的引导方法和装置
    • US20100074218A1
    • 2010-03-25
    • US11993606
    • 2006-06-27
    • Lingyun CaiNi Ma
    • Lingyun CaiNi Ma
    • H04W36/00
    • H04W36/0085H04W36/14
    • The present invention provides a method and apparatus applied to pilot capture for handover between wireless communication networks. In the method, when a mobile station needs to hand over from a GSM system serving as current service network to another wireless communication network, the GSM system and the mobile station will update the logic location of the first idle frame to be met subsequently, which will be inserted after the TDMA frame where the corresponding starting point of pilot capture resides, then the mobile station utilizes idle timeslots after the starting point to form a pilot capture time window with a predefined length, eventually the mobile station captures the pilot signal of the another wireless communication network in the pilot capture time window. Comparing to conventional pilot capture method, with the method provided by the present invention, the mobile station not only capture the complete pilot signal of target handover network, but also achieve the whole pilot-capture process with relatively short time.
    • 本发明提供一种应用于无线通信网络之间切换的导频捕获的方法和装置。 在该方法中,当移动台需要从作为当前业务网络的GSM系统切换到另一无线通信网络时,GSM系统和移动台将更新要随后满足的第一空闲帧的逻辑位置, 将在导频捕获的相应起始点所在的TDMA帧之后插入,然后移动台利用起始点之后的空闲时隙来形成具有预定长度的导频捕获时间窗,最终移动站捕获导频信号的导频信号 另一个无线通信网络在飞行员捕捉时间窗口中。 与传统的导频捕获方法相比,利用本发明提供的方法,移动台不仅捕获目标切换网络的完整导频信号,而且在相对短的时间内实现整个导频捕获过程。
    • 9. 发明申请
    • Method and Apparatus for Joint Detection in Downlink Tdd Cdma
    • 下行Tdd Cdma联合检测方法与装置
    • US20080247337A1
    • 2008-10-09
    • US10599185
    • 2005-03-04
    • Yueheng LiGang WuXuejun ZhangNi Ma
    • Yueheng LiGang WuXuejun ZhangNi Ma
    • H04J3/00
    • H04B1/7105H04B1/7083
    • A method and apparatus for implementing downlink JD (Joint Detection) in TDD CDMA communication systems, wherein the steps to be executed in the UE comprises: receiving downlink signals from a network system in a specific timeslot; acquiring the active primary and secondary channelisation codes in the specific timeslot, through processing the downlink signal; acquiring the initial ACC (Active Channelisation Codes) information for use in implementing JD in the next frame, through implementing a JD algorithm on the downlink signal by using the primary and secondary channelisation codes. An ACC dedicated channel is sent on the FPACH, carrying information relative to the use of secondary channelisation codes.
    • 一种用于在TDD CDMA通信系统中实现下行链路JD(Joint Detection)的方法和装置,其中在UE中执行的步骤包括:在特定时隙中从网络系统接收下行链路信号; 通过处理下行链路信号来获取特定时隙中的主要主要和次要信道化码; 通过使用主要和次要信道化代码,通过在下行链路信号上实现JD算法来获取用于在下一帧中实现JD的初始ACC(主动信道化码)信息。 在FPACH上发送ACC专用信道,携带相对于使用辅助信道化码的信息。
    • 10. 发明申请
    • Method and Apparatus for Enhanced Uplink Data Transmission
    • 用于增强上行链路数据传输的方法和装置
    • US20080198800A1
    • 2008-08-21
    • US11914761
    • 2006-05-10
    • Xiaobo ZhangNi MaYueheng Li
    • Xiaobo ZhangNi MaYueheng Li
    • H04Q7/00
    • H04W72/1257H04W72/1268
    • The present invention provides a method and apparatus used for enhanced uplink data transmission, comprising the steps of: monitoring the communication status of a plurality of UEs (user equipment) which conduct uplink data transmission in the RAN; receiving the data transmitted on at least one dedicated uplink channel from at least one of the plurality of UEs; according to the communication status of the plurality of UEs, dynamically allocating the number of dedicated uplink channels for at least one UE of the plurality of UEs. Utilization of the present invention can enable mobile terminal to conduct more efficient uplink transmission.
    • 本发明提供一种用于增强上行链路数据传输的方法和装置,包括以下步骤:监视在RAN中进行上行链路数据传输的多个UE(用户设备)的通信状态; 从所述多个UE中的至少一个接收在至少一个专用上行链路信道上发送的数据; 根据多个UE的通信状况,为多个UE中的至少一个UE动态分配专用上行链路信道的数量。 本发明的利用可以使得移动终端能够进行更有效的上行链路传输。