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    • 6. 发明申请
    • COMMUNICATION TERMINAL AND BASE STATION
    • 通信终端和基站
    • US20100330995A1
    • 2010-12-30
    • US12865674
    • 2009-01-30
    • Takahisa AoyamaJoachim Loehr
    • Takahisa AoyamaJoachim Loehr
    • H04W36/16
    • H04W72/10H04W28/0268H04W28/0278H04W28/10H04W36/08H04W56/00H04W72/0406H04W72/1242H04W72/1278H04W74/0833H04W74/085H04W76/11H04W76/27H04W88/02H04W88/08
    • A communication terminal adjusts the transmission timing of data transmitted to a base station so that the base station can receive the data within a predetermined delay time. The communication terminal includes a reception section 701 for receiving priority of MAC control information transmitted from the base station, a priority control section 703 for defining the relationship between the priority of the MAC control information and priority assigned to DRB and SRB, and a transmission message generation section 704 for controlling so as to transmit information having a high priority early in accordance with the relationship between the priorities defined by the priority control section 703. According to the communication terminal, a comparison is made between the priority of the MAC control information and the priority assigned to the DRB and the SRB, whereby it is made possible to control what information is to be transmitted as desired.
    • 通信终端调整发送到基站的数据的发送定时,使得基站可以在预定的延迟时间内接收数据。 通信终端包括用于接收从基站发送的MAC控制信息的优先级的接收部分701,用于定义MAC控制信息的优先级与分配给DRB和SRB的优先级之间的关系的优先级控制部分703以及发送消息 生成部分704,用于根据由优先级控制部分703定义的优先级之间的关系来提前发送具有高优先级的信息。根据通信终端,比较MAC控制信息的优先级和 分配给DRB和SRB的优先级,从而可以根据需要控制什么信息被传送。
    • 9. 发明授权
    • Base station, terminal, band allocation method, and downlink data communication method
    • 基站,终端,频带分配方法和下行数据通信方式
    • US08971260B2
    • 2015-03-03
    • US13056615
    • 2009-08-03
    • Seigo NakaoHidetoshi SuzukiAkihiko NishioTakahisa AoyamaKatsuhiko Hiramatsu
    • Seigo NakaoHidetoshi SuzukiAkihiko NishioTakahisa AoyamaKatsuhiko Hiramatsu
    • H04W4/00H04W72/04H04L5/00H04L27/26
    • H04W56/001H04L5/001H04L5/0023H04L5/0048H04L5/0053H04L27/2601H04L27/2647H04W72/0406H04W72/0413H04W72/042H04W72/048H04W72/0493
    • Provided are a base station, a terminal, a band allocation method, and a downlink data communication method in which a mapping method for synchronization signals and report signals is implemented with high resource usage efficiency when a first system in which an independent single communication is allocated to a unit band co-exists with a second system in which a plurality of unit bands can be allocated to a single communication. In a base station (200), an OFDM signal generation unit (225) maps primary synchronization channel (P-SCH), secondary synchronization channel (S-SCH), primary broadcast channel (P-BCH), and dynamic broadcast channel (D-BCH), which can be decoded by both an LTE terminal and an LTE+ terminal, to some of a plurality of unit bands available to the station itself. The OFDM signal generation unit (225) also maps D-BCH+, which can be decoded only by an LTE+ terminal, to all of the plurality of unit bands to produce a multiplexed transmission signal. When the terminal which has transmitted terminal capability information is an LTE+ terminal, a control unit (265) transmits a band movement indication which indicates changes in the reception band to that terminal.
    • 提供一种基站,终端,频带分配方法和下行链路数据通信方法,其中当分配独立单个通信的第一系统时,以高资源使用效率实现同步信号和报告信号的映射方法 到单位频带与其中可以将多个单位频带分配给单个通信的第二系统共存。 在基站(200)中,OFDM信号生成部(225)将主同步信道(P-SCH),辅同步信道(S-SCH),主广播信道(P-BCH)和动态广播信道 -BCH),其可以由LTE终端和LTE +终端解码到站本身可用的多个单位频带中的一些。 OFDM信号生成单元(225)还将仅能由LTE +终端解码的D-BCH +映射到所述多个单位频带的全部以产生复用的发送信号。 当具有发送终端能力信息的终端是LTE +终端时,控制单元(265)向该终端发送指示接收频带的变化的频带移动指示。