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    • 101. 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。
    • 102. 发明申请
    • LOGICAL CHANNEL PRIORITIZATION PROCEDURE FOR GENERATING MULTIPLE UPLINK TRANSPORT BLOCKS
    • 用于生成多个上行链路传输块的逻辑通道优化步骤
    • US20120057547A1
    • 2012-03-08
    • US13265468
    • 2010-04-01
    • Joachim LöhrTakahisa AoyamaMartin Feuersänger
    • Joachim LöhrTakahisa AoyamaMartin Feuersänger
    • H04W72/10H04W52/04
    • H04W52/146H04L5/0007H04L5/0039H04L5/0064H04L5/0092H04L5/0094H04W72/04H04W72/1242H04W72/1268
    • The invention relates to methods for scheduling of uplink transmission and generating transport blocks according to multiple received uplink assignments Furthermore, the invention is also related to the implementation of these methods in hardware and software. To propose strategies for generating plural transport blocks within a given time constraint, the invention introduces prioritization of the uplink assignments, so that multiple uplink assignments can be ranked in the mobile terminal in a priority order. The prioritization of the uplink assignments is used to determine the order in which the individual transport blocks corresponding to the uplink assignments are filled, respectively how the data of different logical channels is multiplexed to the transport blocks for transmission in the uplink. Another aspect of the invention is to suggest joint logical channel procedures that operate on virtual transport blocks accumulated from the received uplink assignments. One or more such joint logical channel procedure can be performed in parallel.
    • 本发明涉及根据多个接收的上行链路分配调度上行链路传输和生成传输块的方法。此外,本发明还涉及这些方法在硬件和软件中的实现。 为了提出在给定时间约束内产生多个传输块的策略,本发明引入了上行链路分配的优先级,使得可以按照优先级顺序在移动终端中对多个上行链路分配进行排名。 使用上行链路分配的优先级来确定与上行链路分配相对应的各个传输块的顺序分别如何将不同的逻辑信道的数据复用到传输块以在上行链路中传输。 本发明的另一方面是提出对从接收到的上行链路分配累积的虚拟传输块进行操作的联合逻辑信道过程。 可以并行地执行一个或多个这样的联合逻辑信道过程。
    • 103. 发明申请
    • RADIO TRANSMITTING/RECEIVING APPARATUS AND METHOD, TERMINAL APPARATUS, BASE STATION APPARATUS AND WIRELESS COMMUNICATION SYSTEM
    • 无线电发射/接收装置和方法,终端装置,基站装置和无线通信系统
    • US20110206011A1
    • 2011-08-25
    • US13126124
    • 2009-10-19
    • Chie IshidaTakahisa Aoyama
    • Chie IshidaTakahisa Aoyama
    • H04W36/00H04W72/04
    • H04W36/04H04L5/0048H04W24/10H04W36/0083H04W36/0094H04W36/24H04W36/36H04W84/045
    • A terminal apparatus (1) which is a radio transmitting/receiving apparatus receives, from a femto cell base station (home eNB), a pilot channel signal for reception quality measurement and a synchronization channel signal for synchronization. The terminal apparatus (1) has a whitelist stored therein indicative of an accessible femto cell, and determines whether or not a CSG cell of handover destination is accessible based on a PCI of the CSG cell acquired from the synchronization channel and the whitelist. The terminal apparatus (1) then adds the PCI and a CGI to a measurement report for reception quality, and transmits the measurement report to a macro eNB (base station apparatus (2)). In this way, it is possible to suppress wasteful signaling and prevent unnecessary resources from being reserved even when two or more CSG cells that use the same PCI are present in the macro cell.
    • 作为无线发送接收装置的终端装置(1)从毫微微小区基站(家庭eNB)接收用于接收质量测量的导频信道信号和用于同步的同步信道信号。 终端装置(1)具有存储在其中的白名单,指示可访问的毫微微小区,并且基于从同步信道和白名单获取的CSG小区的PCI,确定切换目的地的CSG小区是否可访问。 终端装置(1)然后将PCI和CGI添加到测量报告中以用于接收质量,并将测量报告发送到宏eNB(基站装置(2))。 以这种方式,即使在宏小区中存在使用相同PCI的两个或更多个CSG小区,也可以抑制浪费的信令并防止不必要的资源被保留。
    • 105. 发明申请
    • Transmission Scheme of Protocol Data Units During a Procedure That Comprises the Reset of the Protocol Layer
    • 在包含协议层重置的过程中协议数据单元的传输方案
    • US20100118781A1
    • 2010-05-13
    • US12595826
    • 2008-02-28
    • Dragan PetrovicTakahisa Aoyama
    • Dragan PetrovicTakahisa Aoyama
    • H04W40/00
    • H04L1/1887H04L1/0007H04L69/32H04W28/06H04W28/14H04W36/02H04W72/12
    • The invention relates to a method for transmitting data via a protocol sublayer of the mobile node during e.g. a handover that comprises the re-establishment of the protocol sublayer. The mobile node anticipates the handover, and has therefore more time to empty its transmission buffer of the protocol sublayer. Also, the segmentation of service data units (SDUs) into protocol data units (PDUs) is halted upon detecting the upcoming handover. The remaining unacknowledged PDUs in the buffer are then re-transmitted to the source base station such that the source base station can reassemble the corresponding SDUs. Also, the UE may prioritize the re-transmission of the unacknowledged PDUs depending on the priorities of the respective radio bearers. Therefore, after performing the handover to the target base station, the previously transmitted PDUs do not have to be transmitted again, as would be the case when no retransmission of unacknowledged PDUs takes place.
    • 本发明涉及一种在例如移动节点期间经由移动节点的协议子层发送数据的方法。 包括重新建立协议子层的切换。 移动节点预期切换,并且因此有更多的时间来清空协议子层的传输缓冲器。 此外,在检测到即将到来的切换时,服务数据单元(SDU)到协议数据单元(PDU)的分段被停止。 然后将缓冲器中剩余的未确认的PDU重新发送到源基站,使得源基站可以重新组合相应的SDU。 此外,UE可以根据各个无线电承载的优先级对未确认的PDU的重新发送进行优先级排序。 因此,在执行到目标基站的切换之后,不需要再次发送先前发送的PDU,如不发生未确认的PDU的重传的情况。
    • 106. 发明申请
    • WIRELESS COMMUNICATION TERMINAL APPARATUS, WIRELESS COMMUNICATION BASE STATION APPARATUS, WIRELESS COMMUNICATION SYSTEM AND TELEPHONE CALL CONNECTING METHOD
    • 无线通信终端设备,无线通信基站装置,无线通信系统和电话呼叫连接方法
    • US20090275319A1
    • 2009-11-05
    • US12063987
    • 2006-08-18
    • Takahisa AoyamaDragan Petrovic
    • Takahisa AoyamaDragan Petrovic
    • H04M3/00
    • H04W48/12H04W72/042H04W76/10
    • A wireless communication terminal apparatus, a wireless communication base station apparatus, a wireless communication system and a telephone call connecting method wherein the message size in a telephone call connection can be reduced. A broadcast information producing part (203) assigns cell level information, which is preconfiguration information managed by the cell level, and PLMN level information, which is preconfiguration information managed by the PLMN level, to different transmission units to produce broadcast information, which is then broadcasted from a broadcast information transmitting part (204) to UEs. A preconfiguration usage deciding part (208) determines whether a UE, which sets a channel, can use a preconfiguration. If the UE can use a preconfiguration, a control information producing part (209) causes control information to include the corresponding index, and then the control information is transmitted from a control information transmitting part (210) to the UE.
    • 一种无线通信终端装置,无线通信基站装置,无线通信系统和电话呼叫连接方法,其中可以减少电话呼叫连接中的消息大小。 广播信息产生部分(203)将作为小区级管理的预配置信息的小区级别信息和作为​​PLMN级别管理的预配置信息的PLMN级别信息分配给不同的发送单元,生成广播信息 从广播信息发送部(204)广播到UE。 预配置使用决定部(208)判定设定信道的UE是否可以使用预配置。 如果UE可以使用预配置,则控制信息产生部分(209)使得控制信息包括相应的索引,然后控制信息从控制信息发送部分(210)发送到UE。
    • 107. 发明申请
    • MOBILE COMMUNICATION SYSTEM
    • 移动通信系统
    • US20090270043A1
    • 2009-10-29
    • US12495673
    • 2009-06-30
    • Kenichi MIYOSHIKatsuhiko HiramatsuTakahisa AoyamaAtsushi SumasuOsamu Kato
    • Kenichi MIYOSHIKatsuhiko HiramatsuTakahisa AoyamaAtsushi SumasuOsamu Kato
    • H04B17/00
    • H04W28/22H04W24/00H04W52/0229H04W52/0245H04W52/0258H04W52/24H04W52/26H04W72/12H04W72/1284Y02D70/00
    • A mobile communication system which is capable of, when carrying out mobile communication using a shared channel, increasing in efficiency of transmission timing of the data transmission rate request value to prevent wasteful power consumption and hence reduce power consumption. A mobile station apparatus of the mobile communication system measures CIR of the received signal from a base station apparatus at a CIR measuring section, and decides the data transmission rate request value corresponding to the measured CIR value at a rate request value deciding section. Also, it detects an error of the received signal at a CRC section, and, when no error is found, calculates a difference between the average data transmission rate from a base station apparatus and the data transmission request value at a rate request value transmission controlling section. Then, it transmits the data transmission rate request value to the base station apparatus only when the obtained difference is larger than a threshold value.
    • 能够在使用共享信道进行移动通信时能够提高数据传输速率请求值的发送定时的效率的移动通信系统,以防止浪费的功率消耗并因此降低功耗。 移动通信系统的移动站装置在CIR测量部分测量来自基站装置的接收信号的CIR,并且在速率请求值确定部分确定与测量的CIR值对应的数据传输速率请求值。 此外,它检测在CRC部分的接收信号的错误,并且当没有发现错误时,以速率请求值传输控制计算来自基站装置的平均数据传输速率与数据传输请求值之间的差异 部分。 然后,只有当获得的差值大于阈值时,才向基站装置发送数据传输速率请求值。