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    • 31. 发明申请
    • RELAY STATION, MOBILE STATION, AND RELAY TRANSMISSION METHOD IN MOBILE COMMUNICATION SYSTEM
    • 移动通信系统中的继电器,移动站和继电器传输方法
    • US20100197223A1
    • 2010-08-05
    • US12669148
    • 2008-07-18
    • Yoshiko SaitoTakashi AramakiKenichi MiyoshiKatsuhiko HiramatsuHidetoshi SuzukiJun Hirano
    • Yoshiko SaitoTakashi AramakiKenichi MiyoshiKatsuhiko HiramatsuHidetoshi SuzukiJun Hirano
    • H04B7/165
    • 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) 。
    • 33. 发明申请
    • COMMUNICATION TERMINAL APPARATUS AND BASE STATION APPARATUS
    • 通信终端装置和基站装置
    • US20080261545A1
    • 2008-10-23
    • US12132992
    • 2008-06-04
    • Kenichi MiyoshiTakahisa AoyamaToyoki UeOsamu KatoKatsuhiko HiramatsuAtsushi Samasu
    • Kenichi MiyoshiTakahisa AoyamaToyoki UeOsamu KatoKatsuhiko HiramatsuAtsushi Samasu
    • H04B1/04
    • H04W52/265H04W52/24H04W52/241H04W52/246H04W52/262H04W52/267H04W52/367
    • An allocation section 101 in a base station apparatus of the present invention sets the transmission rate of a transmit signal for a communication terminal apparatus based on a DRC signal transmitted from that communication terminal apparatus. A power margin information detector 117 detects power margin information from a demodulated signal generated by a demodulator 115, and, using that power margin information, a power setting section 118 makes a setting so as to give the minimum transmission power value at which received signal characteristics in each communication terminal apparatus meet the desired quality. Using the set transmission power value, the base station apparatus transmits a transmit signal of the set transmission rate to a communication terminal apparatus. By this means it is possible to suppress interference to a communication terminal apparatus that performs adaptive modulation communication with another base station apparatus and a communication terminal apparatus that performs adaptive modulation communication with the local base station apparatus at the same time.
    • 本发明的基站装置中的分配部101基于从该通信终端装置发送的DRC信号来设定通信终端装置的发送信号的发送速度。 功率余量信息检测器117从解调器115产生的解调信号中检测功率余量信息,并且使用该功率余量信息,功率设定部118进行设定,以便给出接收信号特性 在每个通信终端设备中满足期望的质量。 使用设定的发送功率值,基站装置向通信终端装置发送所设定的发送速率的发送信号。 通过这种方式,可以抑制对与本地基站装置同时执行自适应调制通信的另一基站装置和通信终端装置进行自适应调制通信的通信终端装置的干扰。
    • 35. 发明授权
    • Communication terminal apparatus and base station apparatus
    • 通信终端装置和基站装置
    • US07050488B2
    • 2006-05-23
    • US10902580
    • 2004-07-30
    • Kenichi MiyoshiKatsuhiko Hiramatsu
    • Kenichi MiyoshiKatsuhiko Hiramatsu
    • H04B1/38
    • H04L1/0015H04L1/0003H04L1/0025
    • PL demodulation section 203 demodulates pilot signals of a received signal. SIR detection section 205 detects the reception quality of the demodulated pilot signals. fd detection section 206 detects a Doppler frequency using the demodulated pilot signals. Requested modulation method deciding section 207 decides a modulation method to be requested to the base station using the reception quality of pilot signals and the detected Doppler frequency. Command generation section 208 generates a command corresponding to the decided modulation method. Adaptive demodulation section 204 performs demodulation processing on the received signal using the demodulation method corresponding to the modulation method decided by requested modulation method deciding section 207. This makes it possible to maintain good reception quality even in a fading environment.
    • PL解调单元203对接收信号的导频信号进行解调。 SIR检测部件205检测解调的导频信号的接收质量。 fd检测部206使用解调的导频信号来检测多普勒频率。 请求调制方式决定部207使用导频信号的接收质量和检测到的多普勒频率来决定向基站请求的调制方式。 命令生成部208生成与决定的调制方式对应的命令。 自适应解调部204使用与由请求调制方式决定部207决定的调制方式对应的解调方式对接收信号进行解调处理。 这使得即使在褪色环境中也可以保持良好的接收质量。
    • 39. 发明授权
    • Base station device and method for communication
    • 基站装置及通讯方法
    • US06738646B2
    • 2004-05-18
    • US10069267
    • 2002-02-25
    • Kenichi MiyoshiTakahisa AoyamaToyoki UeOsamu KatoKatsuhiko HiramatsuAtsushi Sumasu
    • Kenichi MiyoshiTakahisa AoyamaToyoki UeOsamu KatoKatsuhiko HiramatsuAtsushi Sumasu
    • H04M100
    • H04W52/265H04W52/24H04W52/241H04W52/246H04W52/262H04W52/267H04W52/367
    • An allocation section 101 in a base station apparatus of the present invention sets the transmission rate of a transmit signal for a communication terminal apparatus based on a DRC signal transmitted from that communication terminal apparatus. A power margin information detector 117 detects power margin information from a demodulated signal generated by a demodulator 115, and, using that power margin information, a power setting section 118 makes a setting so as to give the minimum transmission power value at which received signal characteristics in each communication terminal apparatus meet the desired quality. Using the set transmission power value, the base station apparatus transmits a transmit signal of the set transmission rate to a communication terminal apparatus. By this means it is possible to suppress interference to a communication terminal apparatus that performs adaptive modulation communication with another base station apparatus and a communication terminal apparatus that performs adaptive modulation communication with the local base station apparatus at the same time.
    • 本发明的基站装置中的分配部101基于从该通信终端装置发送的DRC信号来设定通信终端装置的发送信号的发送速度。 功率余量信息检测器117从解调器115产生的解调信号中检测功率余量信息,并且使用该功率余量信息,功率设定部118进行设定,以便给出接收信号特性 在每个通信终端设备中满足期望的质量。 使用设定的发送功率值,基站装置向通信终端装置发送所设定的发送速率的发送信号。 通过这种方式,可以抑制对与本地基站装置同时执行自适应调制通信的另一基站装置和通信终端装置进行自适应调制通信的通信终端装置的干扰。
    • 40. 发明授权
    • Base station apparatus and frame synchronization acquisition method
    • 基站装置和帧同步采集方法
    • US06298248B1
    • 2001-10-02
    • US09514194
    • 2000-02-28
    • Kenichi MiyoshiKatsuhiko Hiramatsu
    • Kenichi MiyoshiKatsuhiko Hiramatsu
    • H04B138
    • H04B7/269
    • Before ordinary communications are started, a base station apparatus of the present invention connects antenna 101 for use in acquiring frame synchronization to selector 105 by the control of antenna selection section 113, expands a communication area in the horizontal direction, directly receives a transmission signal from a base station apparatus as a reference of synchronization, and acquires the frame synchronization. After the frame synchronization is acquired, the apparatus communicates with a mobile station apparatus existing in the communication area using antennas 102 and 103. Thus, even in the case where the base station apparatus as the reference of synchronization does not exist in an ordinary communication area, the apparatus can detect the frame timing assuredly, thereby preventing the occurrence of interference between base station apparatuses.
    • 在普通通信开始之前,本发明的基站装置通过天线选择部113的控制将天线101连接到选择器105,以获取帧同步,在水平方向扩展通信区域,直接从 作为同步的基准的基站装置,并获取帧同步。 在获取帧同步之后,设备使用天线102和103与存在于通信区域中的移动站装置通信。因此,即使在普通通信区域中不存在作为同步参考的基站装置的情况下 该装置可以可靠地检测帧定时,从而防止基站装置之间的干扰的发生。