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    • 2. 发明申请
    • MOBILE COMMUNICATION SYSTEM, TERMINAL DEVICE, AND BASE STATION
    • 移动通信系统,终端设备和基站
    • US20120100856A1
    • 2012-04-26
    • US13344882
    • 2012-01-06
    • Chie IshidaTakahisa AoyamaHong Tat TohHong ChengTien Ming Benjamin Koh
    • Chie IshidaTakahisa AoyamaHong Tat TohHong ChengTien Ming Benjamin Koh
    • H04W36/00
    • H04W36/04
    • In a mobile communication system, a handover of a terminal device (MT) from a macrocell base station (eNB) to a small cell base station (HeNB) is controlled via a host device (MME or HeNB-GW). Physical cell ID deployment map information (PCI deployment map information), which includes at least information (PCI/CGI map information) indicating the correspondences between physical cell IDs and unique cell IDs of CSG cells for which access is granted, is generated in the host device (MME or HeNB-GW). When the terminal device measures the reception quality for surrounding CSG cells for handover control to any of the CSG cells, the terminal device uses the PCI deployment map information to generate a measurement result report. Thus, a service interruption caused by handover control to an inaccessible small cell can be avoided, and the wait time for handover control can be reduced.
    • 在移动通信系统中,通过主机装置(MME或HeNB-GW)控制终端装置(MT)从宏小区基站(eNB)到小小区基站(HeNB)的切换。 物理小区ID部署地图信息(PCI部署地图信息),其至少包括指示物理小区ID与被授予了接入的CSG小区的唯一小区ID之间的对应关系的信息(PCI / CGI地图信息) 设备(MME或HeNB-GW)。 当终端装置测量到用于切换控制的周边CSG小区的接收质量到任何CSG小区时,终端装置使用PCI部署地图信息来生成测量结果报告。 因此,可以避免对不可接近的小小区的切换控制引起的业务中断,并且可以减少切换控制的等待时间。
    • 4. 发明申请
    • BASE STATION CONTROLLER AND MOBILE TERMINAL
    • 基站控制器和移动终端
    • US20120088505A1
    • 2012-04-12
    • US13376806
    • 2010-06-10
    • Hong Tat TohHong ChengTakahisa Aoyama
    • Hong Tat TohHong ChengTakahisa Aoyama
    • H04W8/00
    • H04W8/186H04W48/16H04W84/045H04W88/12
    • An HeNB-GW (120) is applied to a network that comprises a plurality of CSG cells, and comprises: an access-permitted CSG-ID list storing section (425) having a CSG identification of a CSG cell that a mobile terminal (140) is permitted to access stored therein; an HeNB information storing section having a PCI corresponding to the CSG cell identification stored therein; a location information receiving section (412) for receiving information identifying the location of the mobile terminal (140); a PCI mapping section (420) that reads at least one CSG cell accessible to the mobile terminal (140) from the access-permitted CSG-ID list storing section (425), reads, from the HeNB information storing section 430, a PCI of an adjacent CSG cell among the read CSG cells within a predetermined range of the CSG cell in which the mobile terminal (140) is present, and generates an accessible PCI list to the mobile terminal (140); and an HeNB managing section 410 for providing the mobile terminal (140) with the accessible PCI list. Therefore, a base station controller with which a mobile terminal can immediately be connected to a CSG cell that the mobile terminal is permitted to access may be provided.
    • HeNB-GW(120)被应用于包括多个CSG小区的网络,包括:具有移动终端(140)的CSG小区的CSG标识的接入允许CSG-ID列表存储部(425) )被允许访问; 具有对应于存储在其中的CSG小区标识的PCI的HeNB信息存储部分; 位置信息接收部分,用于接收标识所述移动终端的位置的信息; 从所述访问许可CSG-ID列表存储部(425)读取所述移动终端(140)可访问的至少一个CSG小区的PCI映射部(420)从所述HeNB信息存储部430读取PCI 在存在移动终端(140)的CSG小区的预定范围内的读取CSG小区中的相邻CSG小区,并且向移动终端(140)生成可访问的PCI列表; 和HeNB管理部分410,用于向移动终端(140)提供可访问的PCI列表。 因此,可以提供移动终端可以立即连接到移动终端被允许访问的CSG小区的基站控制器。
    • 5. 发明申请
    • RADIO COMMUNICATION TERMINAL DEVICE AND GAP ALLOTTING METHOD
    • 无线电通信终端设备和接口方法
    • US20100309803A1
    • 2010-12-09
    • US12745189
    • 2008-12-05
    • Hong Tat TohTakahisa Aoyama
    • Hong Tat TohTakahisa Aoyama
    • H04L12/26H04W72/04
    • H04W36/0088H04L1/0006H04L1/1867H04W72/02
    • The invention provides a wireless communication terminal device and a gap allotting method capable of completing a measuring process at high speed and reducing the number of retransmissions. Upon determining that the average number of retransmissions exceeds the parameter for the average number of retransmissions in gap length change judging unit (115), a gap changing unit (125) changes the currently set gap length using a gap off duration “G_Off_Duration”. A gap pattern setting unit (120) sets a gap pattern based on a gap parameter or the changed gap length, and a measuring unit (130) creates a gap by using the set gap pattern and measures the reference signal in a physical layer input during the gap.
    • 本发明提供了能够高速完成测量处理并减少重发次数的无线通信终端设备和间隙分配方法。 在确定平均重发次数超过间隙长度变化判断单元(115)中的平均重传次数的参数时,间隙改变单元(125)使用间隙关闭持续时间“G_Off_Duration”改变当前设置的间隙长度。 间隙图案设定单元(120)基于间隙参数或改变的间隙长度设定间隙图案,测量单元(130)通过使用设定的间隙图形创建间隙,并且测量在物理层输入期间的参考信号 差距。
    • 6. 发明申请
    • GAP SUPPORT MEASURING METHOD
    • GAP支持测量方法
    • US20100190487A1
    • 2010-07-29
    • US12602149
    • 2008-05-30
    • Bang WangHong Tat TohKoh Wei ChienTakahisa Aoyama
    • Bang WangHong Tat TohKoh Wei ChienTakahisa Aoyama
    • H04W24/00
    • H04W36/0088H04J11/0069H04W72/1278
    • Disclosed is a gap support measuring method which performs autonomous gap allocation without lowering the data transfer rate or the throughput. ST301 acquires various kinds of parameters decided by a network so as to execute a gap support measurement task. ST302 checks the current time and starts the gap support measurement task when the current time has become Ts. ST303 judges whether CQI measured by a terminal is lower than a threshold value. ST304 judges whether the threshold value should be updated. ST306 decides the gap length according to the remaining gap length and the remaining time and performs measurement within the gap. ST307 judges whether the measurement is complete. ST308 checks whether the total of the gaps exceed the entire gap length Tg.
    • 公开了一种间隙支持测量方法,其在不降低数据传输速率或吞吐量的情况下执行自动间隙分配。 ST301获取由网络决定的各种参数,以执行间隙支持测量任务。 当当前时间变为Ts时,ST302检查当前时间并启动间隙支持测量任务。 ST303判断由终端测量的CQI是否低于阈值。 ST304判断阈值是否应更新。 ST306根据剩余间隙长度和剩余时间决定间隙长度,并在间隙内进行测量。 ST307判断测量是否完成。 ST308检查间隙的总和是否超过整个间隙长度Tg。
    • 7. 发明申请
    • Wireless Communication Terminal Apparatus and Wireless Communication Method
    • 无线通信终端设备和无线通信方法
    • US20100048209A1
    • 2010-02-25
    • US12593576
    • 2008-03-28
    • Takahisa AoyamaHong Tat Toh
    • Takahisa AoyamaHong Tat Toh
    • H04W36/00
    • H04W24/10H04W36/0085H04W36/0088
    • A wireless communication terminal apparatus and a wireless communication method wherein a measurement operation, which is suitable for a long DRX/DTX interval, is controlled without providing any new signaling between a terminal and a base station. When a DRX threshold terminal status determining part (107) determines that a set a DRX/DTX interval is longer than a DRX threshold, a measurement process deciding part (108) instructs a measurement implementing part (109) to use information for cell reselection. The measurement implementing part (109) then uses the information for cell reselection to perform a measurement. When a result of the measurement satisfies a cell reselection requirement, a measurement report transmission process deciding part (110) decides a transmission of a measurement report, which is then transmitted from a transmitting part (111) to a wireless communication base station apparatus currently connected.
    • 一种无线通信终端装置和无线通信方法,其中适用于长DRX / DTX间隔的测量操作被控制,而不在终端和基站之间提供任何新的信令。 当DRX阈值终端状态确定部(107)确定DRX / DTX间隔的设置长于DRX阈值时,测量处理决定部(108)指示测量执行部(109)使用信息进行小区重选。 然后,测量实现部分(109)使用用于小区重选的信息来进行测量。 当测量结果满足小区重选要求时,测量报告发送处理决定部(110)决定测量报告的发送,然后从发送部(111)发送到当前连接的无线通信基站装置 。
    • 9. 发明授权
    • Gap support measuring method
    • 间隙支持测量方法
    • US08165175B2
    • 2012-04-24
    • US12602149
    • 2008-05-30
    • Bang WangHong Tat TohKoh Wei ChienTakahisa Aoyama
    • Bang WangHong Tat TohKoh Wei ChienTakahisa Aoyama
    • H04J3/12H04W36/00
    • H04W36/0088H04J11/0069H04W72/1278
    • Disclosed is a gap support measuring method which performs autonomous gap allocation without lowering the data transfer rate or the throughput. ST301 acquires various kinds of parameters decided by a network so as to execute a gap support measurement task. ST302 checks the current time and starts the gap support measurement task when the current time has become Ts. ST303 judges whether CQI measured by a terminal is lower than a threshold value. ST304 judges whether the threshold value should be updated. ST306 decides the gap length according to the remaining gap length and the remaining time and performs measurement within the gap. ST307 judges whether the measurement is complete. ST308 checks whether the total of the gaps exceed the entire gap length Tg.
    • 公开了一种间隙支持测量方法,其在不降低数据传输速率或吞吐量的情况下执行自动间隙分配。 ST301获取由网络决定的各种参数,以执行间隙支持测量任务。 当当前时间变为Ts时,ST302检查当前时间并启动间隙支持测量任务。 ST303判断由终端测量的CQI是否低于阈值。 ST304判断阈值是否应更新。 ST306根据剩余间隙长度和剩余时间决定间隙长度,并在间隙内进行测量。 ST307判断测量是否完成。 ST308检查间隙的总和是否超过整个间隙长度Tg。