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    • 5. 发明授权
    • Method and a base station for allocation measurement gaps
    • 方法和基站用于分配测量差距
    • US09094996B2
    • 2015-07-28
    • US14003913
    • 2011-03-15
    • Yang TianDian WangHuaisong Zhu
    • Yang TianDian WangHuaisong Zhu
    • H04W72/12H04L1/18H04W24/10H04W36/00
    • H04W72/1247H04L1/1812H04L1/1822H04L1/1887H04W24/10H04W36/0088
    • A radio base station and a method therein are provided for allocating measurement gaps within a MGRP to UEs currently being served by the base station, wherein consideration is taken to the impact a measurement gap has on the HARQ processes. A plurality of possible measurement gaps are identified within the MGRP with regards to their starting point and duration in time within the MGRP. A number of HARQ processes that would be affected due to the identified measurement gaps with regards to a starting point in time of the identified measurement gaps during the MGRP are determined for the identified measurement gaps. The identified measurement gaps are ranked depending on the number of HARQ processes which would be affected during the MGRP and the identified measurement gaps are allocated to the UEs based on the ranking.
    • 提供了一种无线电基站及其方法,用于将MGRP内的测量间隙分配给目前由基站服务的UE,其中考虑到测量间隙对HARQ进程的影响。 关于MGRP内的起始点和持续时间,在MGRP内确定了多个可能的测量间隙。 对于所识别的测量间隙,确定由于在MGRP期间所识别的测量间隙的起始时间点所识别的测量间隙而将影响的多个HARQ过程。 所确定的测量间隙根据在MGRP期间将受影响的HARQ进程的数量进行排序,并且基于排名将所识别的测量间隙分配给UE。
    • 7. 发明申请
    • ADAPTIVE PHASE SHIFT APPARATUS AND METHOD
    • 自适应相移装置和方法
    • US20140355727A1
    • 2014-12-04
    • US14371232
    • 2012-01-12
    • Yuanjun XuTao GuHuaisong ZhuYanqiang LiJinsong Yang
    • Yuanjun XuTao GuHuaisong ZhuYanqiang LiJinsong Yang
    • H04L27/26
    • H04L27/2657H04L27/2621H04L27/2689H04W88/08
    • The invention discloses an adaptive phase shift method in a multi-carrier system, comprising: generating a group of one or more new phase values for corresponding one or more phase shift carriers, PSCs, based on quantization phase values; calculating and comparing a backward maximum power in an evaluation path with the group of one or more new phase values in one timeslot and a forward maximum power in a working path with current phase values in the timeslot; and adjusting phase of the PSCs based on the group of one or more new phase values if the calculated backward maximum power is less than the calculated forward maximum power. An adaptive phase shift apparatus is also disclosed. With the invention, complexity of the implementation is reduced and a small DPS block resource, low Hardware cost, low power consumption is also achieved.
    • 本发明公开了一种多载波系统中的自适应相移方法,包括:基于量化相位值,生成相应的一个或多个相移载波PSC的一个或多个新相位值组; 计算和比较评估路径中的后向最大功率与一个时隙中的一个或多个新相位值组和工作路径中的正向最大功率与时隙中的当前相位值进行比较; 以及如果所计算的后向最大功率小于所计算的正向最大功率,则基于一个或多个新相位值的组来调整所述PSC的相位。 还公开了一种自适应相移装置。 利用本发明,实现的复杂度降低,并且还实现了小的DPS块资源,低硬件成本,低功耗。
    • 8. 发明申请
    • Reducing Interference Caused by an Atmospheric Duct in a Mobile Communication System
    • 减少移动通信系统中大气管道引起的干扰
    • US20130322289A1
    • 2013-12-05
    • US14000760
    • 2011-02-24
    • Huaisong ZhuYang HuSteve Lou
    • Huaisong ZhuYang HuSteve Lou
    • H04J3/14
    • H04J3/14H04J11/0056
    • A base station (14) in a mobile communication system operating according to a synchronised time division scheme comprises an antenna (26), a radio communication unit (24) for communicating with mobile stations of the system and an interference investigating unit (28) comprising a link quality measuring element (30), which obtains link quality measurements that are measured in the base station during uplink communication (UL) between at least one mobile station and the base station, a link quality evaluation element (32) that compares link quality measurements of at least one uplink channel with a link quality threshold and determines that the uplink channel is interfered by another base station if the link quality threshold is exceeded, a base station identifying element (34) that identifies the other base station via signals broadcast by the other base station and an interference limiting element (36) configured to perform an interference limitation activity based on the identification.
    • 根据同步时分方式操作的移动通信系统中的基站(14)包括天线(26),用于与系统的移动台进行通信的无线电通信单元(24)和干扰调查单元(28),包括 链路质量测量元件(30),其在至少一个移动站和所述基站之间的上行链路通信(UL)期间获得在所述基站中测量的链路质量测量;链路质量评估元件(32),其将链路质量 测量具有链路质量阈值的至少一个上行链路信道,并且如果超过链路质量阈值,则确定上行链路信道被另一个基站干扰;基站识别元件(34),其经由 所述另一基站和干扰限制元件(36)被配置为基于所述识别来执行干扰限制活动 n。
    • 10. 发明申请
    • Quality Channel Reporting in a Time Division System
    • 时分系统质量通道报告
    • US20100195523A1
    • 2010-08-05
    • US12676059
    • 2007-09-04
    • Lei XiaoJie MaoHuaisong Zhu
    • Lei XiaoJie MaoHuaisong Zhu
    • H04L12/26H04B7/212H04J3/00
    • H04L1/20H04B17/24H04B17/318H04L1/0026
    • A method (400) for use in a wireless communications system (100) with a first transceiver (110) and a second transceiver (130) which communicate with each other, which system is a TDD-system, with communication divided into time frames with time slots. According to the method, the first transceiver transmits (410) a dedicated signal for use as a communications quality indicator by the second transceiver, and the second transceiver reports (420) measurements of the dedicated signal to the first transceiver. The dedicated signal is by the first transceiver in one or more TDD time slots, and the second transceiver measures (430) the individual signal strength of the dedicated signal in at least a first and a second time slot and transmits (440) measurement reports to the first transceiver based on the individual measurements in said first and second time slots of the dedicated signal.
    • 一种用于具有彼此通信的第一收发器(110)和第二收发器(130)的无线通信系统(100)的方法(400),所述系统是TDD系统,其中通信被分为时间帧与 时隙。 根据该方法,第一收发器通过第二收发器发送(410)用作通信质量指示符的专用信号,并且第二收发器向第一收发器报告(420)专用信号的测量结果。 该专用信号是由一个或多个TDD时隙中的第一收发器产生的,而第二收发器在至少第一和第二时隙中测量(430)专用信号的各个信号强度,并将(440)测量报告发送 基于专用信号的所述第一和第二时隙中的各个测量的第一收发器。