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    • 1. 发明申请
    • Wireless Communication Device and Transmission Method
    • 无线通信设备和传输方法
    • US20100248613A1
    • 2010-09-30
    • US12675751
    • 2008-09-05
    • Kenichi MiyoshiHidetoshi SuzukiTakashi AramakiYuichi KobayakawaKatsuhiko Hiramatsu
    • Kenichi MiyoshiHidetoshi SuzukiTakashi AramakiYuichi KobayakawaKatsuhiko Hiramatsu
    • H04B3/36
    • H04W88/04
    • A wireless communication device, e.g., a mobile station, capable of performing its communication and relay processing for another mobile station, when requested, at the same time without stopping the communication and the relay processing. In the device, an outgoing/incoming call request detection unit (106) detects an outgoing/incoming call request indicating that an outgoing call of the signal of the mobile station or an incoming call is requested from a signal inputted from an upper-layer processing unit (105). A relay request detection unit (108) detects a relay request signal indicating that an MS1 requests an MS2 for relay to a base station from a demodulated relay signal inputted from a relay signal demodulation unit (107). A communication rate determination unit (109) determines the communication rate so as to simultaneously transmit both the signal of the mobile station and the relay signal when a signal indicating that an outgoing/incoming call request is detected is inputted from the outgoing/incoming call request detection unit (106) or a signal indicating that a relay request signal is detected is inputted from the relay request detection unit (108).
    • 无线通信装置,例如移动台,能够在不停止通信和中继处理的情况下同时请求时对其他移动台进行通信和中继处理。 在该设备中,呼出/呼入呼叫请求检测单元(106)从上层处理中输入的信号中检测出呼出/呼入呼叫请求,该呼出/呼入呼叫请求指示呼叫移动台的信号或来电呼叫 单元(105)。 中继请求检测单元(108)根据从中继信号解调单元(107)输入的解调后的中继信号,检测指示MS1向基站请求中继的MS2的中继请求信号。 通信速率确定单元(109)确定通信速率,以便当从输入/输入呼叫请求输入指示检测到呼出/呼入呼叫请求的信号时,同时发送移动台的信号和中继信号两者 检测单元(106)或指示检测到中继请求信号的信号从中继请求检测单元(108)输入。
    • 5. 发明授权
    • Relay station, mobile station, and relay transmission method in mobile communication system
    • 移动通信系统中的中继站,移动台和中继传输方式
    • US08265551B2
    • 2012-09-11
    • US12669148
    • 2008-07-18
    • Yoshiko SaitoTakashi AramakiKenichi MiyoshiKatsuhiko HiramatsuHidetoshi SuzukiJun Hirano
    • Yoshiko SaitoTakashi AramakiKenichi MiyoshiKatsuhiko HiramatsuHidetoshi SuzukiJun Hirano
    • H04Q7/20
    • H04W16/26H04B7/15507H04W16/24H04W48/08H04W84/047
    • Provided is a mobile communication system which includes a plurality of RAT (Radio Access Technology) and can eliminate the need of a control channel for reporting RAT information so as to prevent congestion or shortage of the control channel capacity. In the mobile communication system, an LTE relay station (30) has a cover area (31) identical to a cover area (21) owned by a WLAN host station (20) and relays/transmits the signal received from an LTE base station (10) to a mobile station (40) in the cover area (31). The LTE relay station (30) adds to the signal received from the LTE base station (10), one of the offsets: a frequency offset, a time offset, and a power offset as information indicating that the mobile station (40) which receives a relay signal from the local station is located in the cover area (21) of WLAN and transmits the signal after offset addition to the mobile station (40) located in the cover area (31) (i.e., the cover area (21)).
    • 提供了包括多个RAT(无线电接入技术)的移动通信系统,并且可以消除用于报告RAT信息的控制信道的需要,以防止控制信道容量的拥塞或不足。 在移动通信系统中,LTE中继站(30)具有与WLAN主站(20)拥有的覆盖区域(21)相同的覆盖区域(31),并且中继/发送从LTE基站接收的信号 10)到覆盖区域(31)中的移动站(40)。 LTE中继站(30)将从LTE基站(10)接收到的信号中的一个相加,作为指示接收到的移动站(40)的信息的偏移中的一个:频率偏移,时间偏移和功率偏移 来自本地站的中继信号位于WLAN的覆盖区域(21)中,并且将偏移相加后的信号发送到位于覆盖区域(31)(即,覆盖区域(21))中的移动站(40) 。
    • 9. 发明申请
    • RADIO TRANSMITTING APPARATUS AND RADIO TRANSMITTING METHOD
    • 无线电发射装置和无线电发射方法
    • US20090137230A1
    • 2009-05-28
    • US12282791
    • 2007-03-14
    • Kenichi MiyoshiDaichi ImamuraHidetoshi SuzukiTakashi Aramaki
    • Kenichi MiyoshiDaichi ImamuraHidetoshi SuzukiTakashi Aramaki
    • H04M3/42H04M1/00H04B1/38
    • H04L27/2607H04L1/0026H04L1/0081H04L1/0088H04L1/1607H04L25/03159
    • There is provided a wireless transmitting device, the reception quality of which can be improved by effectively using the cyclic prefix. In the wireless transmitting device, a data mapping determination unit (204) determines a data mapping method according to tmax information, and a data mapping unit (207) performs data mapping on the signals outputted from modulation units (205, 206) according to the data mapping method determined by the data mapping determination unit (204). The data mapping determination unit (204) acquires the tmax information transmitted from a communication party and determines to map important information, such as of a control channel, a systematic bit, a resending bit, ACK/NACK information (ACK or NACK), a CQI (Channel Quality Indicator), a TFCI (Transport Format Combination Indicator), information necessary for modulation, a pilot, a power control bit, etc., on the data from its tail end to the portion corresponding to (TGI-tmax).
    • 提供了一种通过有效地使用循环前缀来提高其接收质量的无线发送装置。 在无线发送装置中,数据映射决定部(204)根据tmax信息确定数据映射方法,数据映射部(207)根据调制部(205,206)输出的信号进行数据映射 数据映射确定单元(204)确定的数据映射方法。 数据映射确定单元(204)获取从通信方发送的tmax信息,并确定映射重要信息,例如控制信道,系统比特,重发位,ACK / NACK信息(ACK或NACK), CQI(信道质量指示符),TFCI(传输格式组合指示符),调制所需的信息,导频,功率控制位等,从其尾端到与(TGI-tmax)对应的部分的数据。
    • 10. 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。