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    • 1. 发明申请
    • TRANSMISSION DEVICE AND TRANSMISSION METHOD
    • 传输设备和传输方法
    • US20130163573A1
    • 2013-06-27
    • US13820221
    • 2011-09-29
    • Toru OizumiSeigo NakaoAyako HoriuchiDaichi ImamuraHidetoshi Suzuki
    • Toru OizumiSeigo NakaoAyako HoriuchiDaichi ImamuraHidetoshi Suzuki
    • H04W72/04
    • H04W72/0446H04L5/0007H04L5/0053H04L5/0091H04W72/042
    • Provided are a transmission device and transmission method that are capable of allowing leeway in data reception processing on the receiving side regardless of the position in time of a resource region to which control information, which is contained in resource allocation information for transmission data, is mapped. A setting unit (101) sets a mapping region, which maps a DCI in accordance with the downlink data size that the DCI indicates, from among a PDCCH region, an R-PDCCH region in slot 0, and an R-PDCCH region in slot 1 that are provided in order in the time direction within a subframe. In a setting rule table used in setting the mapping region, PDCCH region, R-PDCCH region in slot 0, and R-PDCCSH region in slot 1 are associated with maximum size value of a downlink data size that the DCI indicates and that can be set in each resource region.
    • 提供了能够在接收侧的数据接收处理中允许余地的发送装置和发送方法,而不管发送数据的资源分配信息中包含的控制信息被映射到资源区域的时间的位置 。 设置单元(101)根据PDCCH指示的下行链路数据大小,将时隙0中的R-PDCCH区域和时隙0中的R-PDCCH区域设置映射区域,该映射区域根据DCI指示的下行链路数据大小映射DCI 1,其在子帧内沿时间方向依次提供。 在用于设置映射区域的设置规则表中,时隙0中的PDCCH区域,时隙0中的R-PDCCH区域和时隙1中的R-PDCCSH区域与DCI指示的下行链路数据大小的最大大小值相关联,并且可以是 设置在每个资源区域。
    • 2. 发明授权
    • Transmission device and transmission method
    • 传输装置及传输方式
    • US08908657B2
    • 2014-12-09
    • US13820221
    • 2011-09-29
    • Toru OizumiSeigo NakaoAyako HoriuchiDaichi ImamuraHidetoshi Suzuki
    • Toru OizumiSeigo NakaoAyako HoriuchiDaichi ImamuraHidetoshi Suzuki
    • H04J3/00H04W72/04H04L5/00
    • H04W72/0446H04L5/0007H04L5/0053H04L5/0091H04W72/042
    • Provided are a transmission device and transmission method that are capable of allowing leeway in data reception processing on the receiving side regardless of the position in time of a resource region to which control information, which is contained in resource allocation information for transmission data, is mapped. A setting unit (101) sets a mapping region, which maps a DCI in accordance with the downlink data size that the DCI indicates, from among a PDCCH region, an R-PDCCH region in slot 0, and an R-PDCCH region in slot 1 that are provided in order in the time direction within a subframe. In a setting rule table used in setting the mapping region, PDCCH region, R-PDCCH region in slot 0, and R-PDCCSH region in slot 1 are associated with maximum size value of a downlink data size that the DCI indicates and that can be set in each resource region.
    • 提供了能够在接收侧的数据接收处理中允许余地的发送装置和发送方法,而不管发送数据的资源分配信息中包含的控制信息被映射到资源区域的时间的位置 。 设置单元(101)根据PDCCH指示的下行链路数据大小,将时隙0中的R-PDCCH区域和时隙0中的R-PDCCH区域设置映射区域,该映射区域根据DCI指示的下行链路数据大小映射DCI 1,其在子帧内沿时间方向依次提供。 在用于设置映射区域的设置规则表中,时隙0中的PDCCH区域,时隙0中的R-PDCCH区域和时隙1中的R-PDCCSH区域与DCI指示的下行链路数据大小的最大大小值相关联,并且可以是 设置在每个资源区域。
    • 4. 发明授权
    • Wireless communication device and wireless communication method
    • 无线通信设备和无线通信方式
    • US08804650B2
    • 2014-08-12
    • US13635991
    • 2011-03-22
    • Ayako HoriuchiSeigo NakaoAkihiko NishioDaichi ImamuraYasuaki Yuda
    • Ayako HoriuchiSeigo NakaoAkihiko NishioDaichi ImamuraYasuaki Yuda
    • H04W74/04H04L1/18H04W84/04H04W72/12
    • H04L1/1854H04W72/1268H04W84/047
    • A wireless communication device according to the invention includes a reception section that receives a downlink signal in a first subframe from another wireless communication device; an ACK/NACK generation section that generates ACK/NACK which indicates an error determination result of the received downlink signal; a determination section that determines, when an uplink signal directed to the other wireless communication device is not allocated in a second subframe, whether a different uplink signal is allocated in a third subframe subsequent to the first subframe by a predetermined number of subframes and previous to the second subframe; a multiplexing section that multiplexes the ACK/NACK to the different uplink signal in the third subframe when the determination section determines that the different uplink signal is allocated in the third subframe; and a transmission section that transmits the different uplink signal in which the ACK/NACK is multiplexed by the multiplexing section.
    • 根据本发明的无线通信设备包括接收部分,其从另一无线通信设备接收第一子帧中的下行链路信号; ACK / NACK生成部,其生成表示接收到的下行链路信号的错误判定结果的ACK / NACK; 确定部分,当在第二子帧中未分配指向另一无线通信设备的上行链路信号时,确定在第一子帧之后的第三子帧中是否分配了不同的上行链路信号预定数量的子帧,并且在 第二子帧; 当所述确定部分确定在所述第三子帧中分配了所述不同的上行链路信号时,将所述ACK / NACK复用到所述第三子帧中的所述不同上行链路信号; 以及发送部,其发送由复用部复用了ACK / NACK的不同的上行链路信号。
    • 10. 发明申请
    • WIRELESS COMMUNICATION RELAY STATION APPARATUS, WIRELESS COMMUNICATION APPARATUS, WIRELESS COMMUNICATION RELAY METHOD, AND WIRELESS COMMUNICATION METHOD
    • 无线通信中继站设备,无线通信设备,无线通信中继方法和无线通信方法
    • US20120082085A1
    • 2012-04-05
    • US13376653
    • 2010-06-21
    • Ayako HoriuchiYasuaki YudaSeigo NakaoDaichi Imamura
    • Ayako HoriuchiYasuaki YudaSeigo NakaoDaichi Imamura
    • H04B7/14
    • H04B7/15564H04B7/15542H04B7/2606H04W72/082H04W84/047
    • The present invention provides a wireless communication relay station apparatus, a wireless communication apparatus, a wireless communication relay method and a wireless communication method which are capable of effectively utilizing resources and preventing loop interference. A wireless communication relay station apparatus according to the present invention is a wireless communication relay station apparatus for relaying communication between a first wireless communication apparatus and a second wireless communication apparatus in at least two or more frequency bands, the wireless communication relay station apparatus including: a transmitter for, using a first subframe, transmitting 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; and a receiver for, using a second subframe, receiving a second downlink signal from the first wireless communication apparatus in the first frequency band, and receiving a second uplink signal from the second wireless communication apparatus in the second frequency band.
    • 本发明提供能够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,无线通信中继方式和无线通信方法。 根据本发明的无线通信中继站装置是一种用于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的无线通信中继站装置,所述无线通信中继站装置包括: 用于使用第一子帧在第一频带向第一无线通信装置发送第一上行链路信号并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的发射机; 以及接收机,用于使用第二子帧从所述第一频带中的所述第一无线通信装置接收第二下行链路信号,以及在所述第二频带中从所述第二无线通信装置接收第二上行链路信号。