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    • 2. 发明授权
    • Wireless communication relay station apparatus, wireless communication apparatus, wireless communication relay method, and wireless communication method
    • 无线通信中继站装置,无线通信装置,无线通信中继方式以及无线通信方式
    • US08649317B2
    • 2014-02-11
    • US13376653
    • 2010-06-21
    • Ayako HoriuchiYasuaki YudaSeigo NakaoDaichi Imamura
    • Ayako HoriuchiYasuaki YudaSeigo NakaoDaichi Imamura
    • H04B7/14
    • H04B7/15564H04B7/15542H04B7/2606H04W72/082H04W84/047
    • A wireless communication relay station apparatus, a wireless communication apparatus, a wireless communication relay method and a wireless communication method are presented that effectively utilize resources and prevent loop interference. A wireless communication relay station relays communication between a first wireless communication apparatus and a second wireless communication apparatus in at least two or more frequency bands and includes a transmitter for using a first subframe to transmit a first uplink signal to the first wireless communication apparatus in a first frequency band, and transmitting a first downlink signal to the second wireless communication apparatus in a second frequency band. A relay station receiver receives a second downlink signal from the first wireless communication apparatus in the first frequency band, and receives a second uplink signal from the second wireless communication apparatus in the second frequency band.
    • 提出了一种有效利用资源并防止环路干扰的无线通信中继站装置,无线通信装置,无线通信中继方法和无线通信方法。 无线通信中继站在至少两个或更多个频带中中继第一无线通信装置和第二无线通信装置之间的通信,并且包括用于使用第一子帧在第一无线通信装置中向第一无线通信装置发送第一上行链路信号的发射机 第一频带,并且在第二频带中向第二无线通信装置发送第一下行链路信号。 中继站接收机在第一频带中接收来自第一无线通信装置的第二下行链路信号,并且在第二频带中从第二无线通信装置接收第二上行链路信号。
    • 6. 发明申请
    • WIRELESS COMMUNICATION DEVICE AND WIRELESS COMMUNICATION METHOD
    • 无线通信设备和无线通信方法
    • US20120320820A1
    • 2012-12-20
    • US13582300
    • 2011-03-16
    • Yasuaki YudaSeigo NakaoAyako HoriuchiAkihiko NishioDaichi ImamuraTakashi Iwai
    • Yasuaki YudaSeigo NakaoAyako HoriuchiAkihiko NishioDaichi ImamuraTakashi Iwai
    • H04W52/04
    • H04W52/146H04W52/242H04W52/244H04W52/362H04W52/46
    • A wireless communication device which can improve reception quality in a second other wireless communication device is disclosed, including a reception unit which receives a signal from a first other wireless communication device or a second other wireless communication device connected to the wireless communication device and the first other wireless communication device, a transmission power value setting unit which sets a transmission power value in a first subframe, in which the first other wireless communication device transmits a signal to the second other wireless communication device, to be higher than that in a second subframe in which the first other wireless communication device receives a signal from a third other wireless communication device connected to the first other wireless communication device, and a transmission power value switching control unit which performs switching in the first subframe to the transmission power value higher than that in the second subframe.
    • 公开了一种能够提高第二其他无线通信装置的接收质量的无线通信装置,包括接收来自第一其他无线通信装置的信号的接收部,或连接到无线通信装置的第二其他无线通信装置, 其他无线通信装置,将第一其他无线通信装置向第二其他无线通信装置发送信号的第一子帧中的发送功率值设定为高于第二子帧的发送功率值设定部 其中第一其他无线通信设备接收来自连接到第一其他无线通信设备的第三其他无线通信设备的信号,以及发送功率值切换控制单元,其执行第一子帧中的切换为高于该第一子帧的发送功率值 在第二子帧中。
    • 8. 发明申请
    • WIRELESS COMMUNICATION TERMINAL AND WIRELESS COMMUNICATION METHOD
    • 无线通信终端和无线通信方法
    • US20120051256A1
    • 2012-03-01
    • US13318224
    • 2010-05-14
    • Yasuaki YudaSeigo NakaoDaichi ImamuraAyako Horiuchi
    • Yasuaki YudaSeigo NakaoDaichi ImamuraAyako Horiuchi
    • H04B7/14H04W24/00H04L12/26
    • H04W72/085H04B7/2606H04W24/10H04W84/047
    • To measure the channel quality of adjacent cells with satisfactory precision without interference of a current cell. A wireless communication terminal of the invention is connected to a relay station and configured to receive data from at least one of the relay station, a base station, and another relay station different from the relay station. The wireless communication terminal includes a receiver which receives a signal including control information for measuring the channel quality of the non-connected base station or another non-connected relay station from the connected relay station, an extractor which extracts the control information from the signal received by the receiver, a measurement section which measures the channel quality of the non-connected base station or non-connected another relay station in a region, in which the connected relay station does not transmit other signals to the wireless communication terminal, on the basis of the control information, and a transmitter which transmits the measurement result of the channel quality of the non-connected base station or another non-connected relay station measured by the measurement section to the connected relay station.
    • 测量相邻小区的信道质量,而且不受当前小区的干扰。 本发明的无线通信终端连接到中继站,并且被配置为从与中继站不同的中继站,基站和另一个中继站中的至少一个接收数据。 无线通信终端包括:接收装置,接收包含控制信息的信号,所述控制信息包括用于从所连接的中继站测量未连接的基站或另一非连接的中继站的信道质量;提取器,从接收到的信号中提取控制信息 在接收机中,基于所连接的中继站不向无线通信终端发送其他信号的区域中测量未连接的基站或非连接的另一中继站的信道质量的测量部分 控制信息的发送装置,以及将由测量部测量的非连接基站或其他未连接的中继站的信道质量的测量结果发送给所连接的中继站的发送机。
    • 9. 发明申请
    • FREQUENCY BAND ALLOCATION METHOD AND TRANSMISSION DEVICE
    • 频带分配方法和传输设备
    • US20110134870A1
    • 2011-06-09
    • US13057254
    • 2009-08-06
    • Ayako HoriuchiKatsuhiko HiramatsuSeigo NakaoYasuaki Yuda
    • Ayako HoriuchiKatsuhiko HiramatsuSeigo NakaoYasuaki Yuda
    • H04W72/04
    • H04W72/0446H04L5/0007H04L5/0066H04L5/143H04L27/2614H04W16/12
    • Disclosed is a frequency band allocation method which reduces PAPR (peak to average power ratio) when performing a single carrier transmission in the uplink line of an LTE+ (LTE Advanced) system in a system using both of an LTE (Long Term Evolution) system and the LTE+ system. In the frequency band allocation method, a UL band for the LTE is arranged adjacently in a lower frequency band than the UL band for the LTE+. With this arrangement, it is possible to prevent division of the band for the LTE+by the uplink line control channel (such as PUCCH) transmitted by an LTE mobile station and to allocate a wide band continuously with the LTE+ mobile station. Especially when the LTE+ mobile station performs a single carrier transmission with the uplink line, the PAPR can be reduced since it is possible to allocate a band continuous with the single carrier signal.
    • 公开了一种频带分配方法,其在使用LTE(长期演进)系统和LTE(长期演进)系统的系统中,在LTE +(LTE高级)系统的上行线路中进行单载波传输时,降低PAPR(峰均功率比) LTE +系统。 在频带分配方法中,与LTE +的UL频带相比,用于LTE的UL频带相邻布置。 通过这种布置,可以防止由LTE移动台发送的上行线路控制信道(例如PUCCH)对LTE +的频带进行分频,并且与LTE +移动台连续分配宽带。 特别是当LTE +移动台利用上行链路进行单载波传输时,可以减少PAPR,因为可以分配与单载波信号连续的频带。
    • 10. 发明授权
    • Base station, terminal, transmission method, and reception method
    • 基站,终端,发送方式和接收方式
    • US09295037B2
    • 2016-03-22
    • US13823966
    • 2011-09-22
    • Ayako HoriuchiYasuaki YudaSeigo Nakao
    • Ayako HoriuchiYasuaki YudaSeigo Nakao
    • H04W72/04H04L5/00H04W84/04
    • H04W72/0406H04L5/0007H04L5/0053H04W84/047
    • A base station, a terminal, a transmission method and a reception method that allow the data processing on a reception side to have a margin irrespective of the time position of a resource region where control information is mapped. In a base station (100), a subframe type determining unit (101) determines, according to a configuration pattern applied to the local base station apparatus and being one of a plurality of configuration patterns different between downlink and uplink subframe configurations in time division multiplex, whether a subframe to be determined is a first type of subframe where control information is mapped only to a PDCCH region or a second type of subframe where the control information is mapped to both the PDCCH region and an R-PDCCH region. An allocation region candidate determining unit (102) determines, based on a result of the determination by the subframe type determining unit (101), a mapping region, where the control information is mapped, in the PDCCH or R-PDCCH region in the subframe to be determined.
    • 与控制信息被映射的资源区域的时间位置无关地,允许接收侧的数据处理具有余量的基站,终端,发送方法和接收方法。 在基站(100)中,子帧类型确定单元(101)根据应用于本地基站装置的配置模式,确定时分复用中的下行链路和上行子帧配置之间的不同配置模式之一 要确定的子帧是否是控制信息仅映射到PDCCH区域的第一类型的子帧,或者控制信息映射到PDCCH区域和R-PDCCH区域的第二类型的子帧。 分配区域候选确定单元(102)基于子帧类型确定单元(101)的确定结果,确定在子帧中的PDCCH或R-PDCCH区域中映射控制信息的映射区域 待定