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    • 62. 发明授权
    • Base station device, terminal device, and closed loop control method
    • 基站装置,终端装置和闭环控制方法
    • US08902764B2
    • 2014-12-02
    • US12521514
    • 2007-12-27
    • Tomohiro ImaiShozo OkasakaKatsuhiko Hiramatsu
    • Tomohiro ImaiShozo OkasakaKatsuhiko Hiramatsu
    • H04L5/00H04B7/26H04L1/00H04L25/02
    • H04L5/0053H04B7/2615H04L1/0015H04L1/0029H04L5/0051H04L25/023
    • Provided is a base station device capable of reducing a DL-CSI feedback amount in a TDD type radio communication system in which a DL bandwidth is different from a UL bandwidth. In this device, a demultiplexing unit (133) separates an UL pilot, a DL-CQI, and a DL-CSI fed back from a plurality of UEs as communication partners; a channel estimation unit (134) performs channel sounding by using a UL pilot from a UE in which a DL channel and a UL channel are allocated by overlapping a part of the bandwidth so as to obtain UL-CSI; a control DL-CSI acquisition unit (135) performs interpolation of DL-CSI by using the DL-CSI of some RB contained in the bandwidth where the DL channel and the UL channel fed back from the UE are not overlapped; and a DL close loop control unit (104) combines the estimated UL-CSI and the interpolated DL-CSI so as to use them as DL-CSI for controlling the DL close loop.
    • 提供一种能够减少DL带宽与UL带宽不同的TDD型无线通信系统中的DL-CSI反馈量的基站装置。 在该设备中,解复用单元(133)将从多个UE反馈的UL导频,DL-CQI和DL-CSI分离为通信伙伴; 信道估计单元(134)通过使用来自通过重叠一部分带宽来分配DL信道和UL信道的UE的UL导频来执行信道探测,以获得UL-CSI; 控制DL-CSI获取单元(135)通过使用包含在从UE反馈的DL信道和UL信道不重叠的带宽中的一些RB的DL-CSI来执行DL-CSI的内插; 并且DL闭环控制单元(104)将估计的UL-CSI和内插DL-CSI组合,以便将它们用作用于控制DL闭环的DL-CSI。
    • 64. 发明申请
    • RADIO COMMUNICATION METHOD, RELAY STATION DEVICE, AND RADIO RECEIVER DEVICE
    • 无线电通信方法,中继站设备和无线接收设备
    • US20110165835A1
    • 2011-07-07
    • US13046376
    • 2011-03-11
    • Ayako HORIUCHIKenichi KuriKenichi MiyoshiAkihiko NishioTomohiro Imai
    • Ayako HORIUCHIKenichi KuriKenichi MiyoshiAkihiko NishioTomohiro Imai
    • H04B7/14
    • H04L1/18H04B7/15557H04L2001/0097
    • Provided is a radio communication method or the like for making compatible an improvement in error rate characteristics and a reduction in delay. The radio communication method is used in a mobile communication system including a mobile station, a relay station and a base station. A transmitted signal containing a signal addressed to the base station is transmitted at first from the mobile station to the relay station. A non-reproduced relay signal obtained in the relay station from the transmitted signal is transmitted from the relay station to the base station. On the basis of the reception result of the non-reproduced relay signal at the base station, a re-transmission request of the transmitted signal is transmitted from the base station. A reproduced relay signal, as obtained from the transmitted signal in the relay station, is transmitted from the relay station to the base station in accordance with the re-transmission request transmitted from the base station.
    • 提供了一种用于使兼容的错误率特性的改善和延迟的减少的无线电通信方法等。 无线电通信方法用于包括移动台,中继站和基站的移动通信系统。 首先从移动台向中继站发送包含寻址到基站的信号的发送信号。 在中继站从所发送的信号获得的非再生中继信号从中继站发送到基站。 基于基站的未再生中继信号的接收结果,从基站发送发送信号的重发请求。 根据从基站发送的重传请求,从中继站向基站发送从中继站中的发送信号获得的再生中继信号。
    • 65. 发明授权
    • Radio reception apparatus and radio reception method
    • 无线接收装置和无线接收方法
    • US07929988B2
    • 2011-04-19
    • US11816824
    • 2006-02-20
    • Ayako HoriuchiKenichi KuriKenichi MiyoshiAkihiko NishioTomohiro Imai
    • Ayako HoriuchiKenichi KuriKenichi MiyoshiAkihiko NishioTomohiro Imai
    • H04M1/00
    • H04L1/18H04B7/15557H04L2001/0097
    • Provided is a radio communication method or the like for making compatible an improvement in error rate characteristics and a reduction in delay. The radio communication method is used in a mobile communication system (1) including a mobile station (10), a relay station (20) and a base station (30). A transmitted signal containing a signal addressed to the base station (30) is transmitted at first from the mobile station (10) to the relay station (20). A non-reproduced relay signal obtained in the relay station (20) from the transmitted signal is transmitted from the relay station (20) to the base station (30). On the basis of the reception result of the non-reproduced relay signal at the base station (30), a re-transmission request of the transmitted signal is transmitted from the base station (30). A reproduced relay signal, as obtained from the transmitted signal in the relay station (20), is transmitted from the relay station (20) to the base station (30) in accordance with the re-transmission request transmitted from the base station (30).
    • 提供了一种用于使兼容的错误率特性的改善和延迟的减少的无线电通信方法等。 无线电通信方法用于包括移动台(10),中继站(20)和基站(30)的移动通信系统(1)中。 首先从移动台(10)向中继站(20)发送包含寻址到基站(30)的信号的发送信号。 从所述中继站(20)向所述基站(30)发送从所述发送信号在所述中继站(20)中获得的未再生的中继信号。 基于在基站(30)处的未再生的中继信号的接收结果,从基站(30)发送发送的信号的再发送请求。 根据从基站(30)发送的再发送请求,从中继站(20)向基站(30)发送从中继站(20)中的发送信号获得的再生中继信号, )。
    • 67. 发明申请
    • PILOT TRANSMISSION METHOD, MIMO TRANSMISSION DEVICE, MIMO RECEPTION DEVICE WHICH PERFORMS COMMUNICATION WITH MIMO TRANSMISSION DEVICE
    • 导频传输方法,MIMO传输设备,MIMO接收设备,其利用MIMO传输设备进行通信
    • US20100260235A1
    • 2010-10-14
    • US12746466
    • 2008-12-10
    • Isamu YoshiiAtsushi SumasuTomohiro ImaiHidenori Kayama
    • Isamu YoshiiAtsushi SumasuTomohiro ImaiHidenori Kayama
    • H04B1/707
    • H04L5/0048H04B7/0671H04L5/0023H04L23/02H04L25/0226
    • It is possible to provide a novel pilot transmission method which can calculate an accurate channel estimation value, a MIMO transmission device using the pilot transmission method, and a MIMO reception device which performs communication with the MIMO transmission device. The MIMO transmission device (100) includes a cyclic shift processing unit (150) which cyclically shifts a first pilot signal sequence spread by a spread code 1 and second pilot signal sequence spread by a spread code 2 with different shift amounts. The first pilot signal sequence and the second pilot signal sequence which have been cyclically shifted are transmitted from different transmitting antennas at the same pilot transmission symbol section. Thus, by changing the shift amount of the cyclic shift process executed on each pilot signal sequence spread by the respective spread codes, it is possible to improve the pilot separation accuracy at a reception side. This enables more accurate calculation of a channel estimation value.
    • 可以提供一种可以计算准确的信道估计值的新型导频传输方法,使用导频传输方法的MIMO传输装置,以及与MIMO传输装置进行通信的MIMO接收装置。 MIMO传输装置(100)包括循环移位处理单元(150),循环移位处理单元(150),循环移位由扩频码扩展的第一导频信号序列和以扩频码扩展的第二导频信号序列。 已经循环移位的第一导频信号序列和第二导频信号序列在相同的导频传输符号部分从不同的发射天线发射。 因此,通过改变对各扩频码扩频的每个导频信号序列执行的循环移位处理的移位量,可以提高接收端的导频分离精度。 这使得能够更准确地计算信道估计值。
    • 69. 发明申请
    • RADIO COMMUNICATION APPARATUS AND RADIO COMMUNICATION METHOD
    • 无线电通信设备和无线电通信方法
    • US20090130975A1
    • 2009-05-21
    • US12282331
    • 2007-03-29
    • Ayako HoriuchiKenichi MiyoshiTomohiro ImaiHiroaki Morino
    • Ayako HoriuchiKenichi MiyoshiTomohiro ImaiHiroaki Morino
    • H04B17/02
    • H04B7/022H04B7/026H04B7/15592H04L1/0643H04L1/1887H04L2001/0097
    • Provided is a mobile communication system capable of obtaining a diversity effect even when a signal received by a relay station has an error in a corporate relay to which time space encoding is applied. In this mobile communication system, when S1 has no error and S2 has an error, a relay station (1) does not perform relay transmission at time t (Null) and relay-transmits S1* to a base station at time t+T. That is, in this case, the relay station (1) relay-transmits at time t+T only S1 to be transmitted at time t when no error is contained in either S1 or S2. Moreover, when S1 has an error and S2 has no error, the relay station (1) relay-transmits S2 at time t and does not perform relay transmission at time t+T (Null). That is, in this case, the relay station (1) relay-transmits only S2 to be transmitted at time t+T at time t if no error is contained in either S1 or S2.
    • 提供了即使当中继站接收的信号在应用了时间空间编码的公司中继中具有错误时,也能够获得分集效应的移动通信系统。 在该移动通信系统中,当S1没有错误且S2有错误时,中继站(1)在时刻t(Null)不执行中继传输,并且在时刻t + T向基站中继发送S1 *。 也就是说,在这种情况下,中继站(1)在时刻t + T仅中继 - 在S1或S2中不包含错误的情况下,在时间t发送要发送的S1。 此外,当S1发生错误且S2没有错误时,中继站(1)在时刻t中继发送S2,在时刻t + T(Null)不进行中继发送。 也就是说,在这种情况下,如果在S1或S2中没有包含错误,则中继站(1)在时间t仅中继仅发送在时间t + T发送的S2。