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    • 1. 发明申请
    • WIRELESS COMMUNICATION APPARATUS AND MAPPING METHOD
    • 无线通信设备和映射方法
    • US20100202386A1
    • 2010-08-12
    • US12680164
    • 2008-09-26
    • Shinsuke TakaokaMasayuki HoshinoAkihiko NishioYasuaki YudaRyohei Kimura
    • Shinsuke TakaokaMasayuki HoshinoAkihiko NishioYasuaki YudaRyohei Kimura
    • H04W72/04
    • H04L1/0083H04L69/323H04W28/06
    • A wireless communication apparatus wherein the power consumption can be reduced. In this apparatus, a code block dividing part (101) divides a transport block, in which filler bits have been inserted, into a plurality of code blocks. A mapping control part (107) controls, based on both scheduling information, which is received from a scheduler (not shown) and indicative of physical channel resources to be used for code block transmission, and the number of filler bits which is received from the code block dividing part (101), the plurality of code blocks so that they will be mapped to the respective physical channel resources in such an order that a respective code block having a less number of filler bits will be mapped to a respective more forward physical channel resource. A mapping part (108) then maps, based on mapping information received from the mapping control part (107), data symbols, which are received from the modulating parts (106) of the respective ones of code block processing parts (102-1 to 102-C), to the physical channel resources.
    • 一种能够降低功耗的无线通信装置。 在该装置中,代码块分割部(101)将填充位插入的传送块分割为多个代码块。 映射控制部分(107)基于从调度器(未示出)接收并指示要用于码块传输的物理信道资源的两个调度信息和从所述调度器接收的填充比特数 代码块分割部分(101),多个代码块,使得它们将被映射到各个物理信道资源,使得具有较少填充比特数的相应代码块将被映射到相应的更前进的物理 渠道资源 映射部分(108)然后基于从映射控制部分(107)接收到的映射信息,映射从数据块处理部分(102-1至...的相应代码块处理部分)的调制部分(106)接收的数据符号 102-C),到物理信道资源。
    • 9. 发明授权
    • MIMO transmitting apparatus, MIMO receiving apparatus, and retransmitting method
    • MIMO发送装置,MIMO接收装置以及重传方法
    • US08086927B2
    • 2011-12-27
    • US11909415
    • 2006-03-27
    • Masayuki HoshinoRyohei KimuraYasuaki YudaTomohiro ImaiKenichi Miyoshi
    • Masayuki HoshinoRyohei KimuraYasuaki YudaTomohiro ImaiKenichi Miyoshi
    • G08C25/02G06F11/10
    • H04L1/0009H04L1/0071H04L1/08H04L1/1812
    • A MIMO transmitting apparatus that achieves a flexible control in accordance with variation of a propagation environment to reduce the number of retransmissions is disclosed. An intra-code-word interleaver performs an interleave process on bits included in symbols to be simultaneously transmitted from a plurality of transmitting antennas. When performing the intra-code-word interleave process, the intra-code-word interleaver performs the interleave process in accordance with an interleave pattern notified from an interleave pattern table. A counter counts a number of retransmission requests, and outputs the number of retransmission requests to the interleave pattern table. The interleave pattern table stores interleave patterns to be used for the intra-code-word interleave process for the respective numbers of retransmission requests, and notifies the intra-code-word interleaver of an interleave pattern in accordance with the number of retransmission requests.
    • 公开了一种根据传播环境的变化实现灵活控制以减少重发次数的MIMO发送装置。 码内字交错器对从多个发送天线同时发送的符号中包含的比特执行交织处理。 当执行码内字交错处理时,帧内码交织器根据从交织模式表通知的交织模式进行交织处理。 计数器对多个重传请求进行计数,并将重传请求的次数输出到交织模式表。 交织模式表存储用于各个重发请求次数的码内字交织处理的交织模式,并根据重发请求次数通知码内字交织器交织模式。
    • 10. 发明授权
    • Radio communication system, radio communication device, and channel correlation matrix decision method
    • 无线电通信系统,无线电通信设备和信道相关矩阵决策方法
    • US08081702B2
    • 2011-12-20
    • US12280677
    • 2007-02-28
    • Masayuki HoshinoKenichi MiyoshiYasuaki YudaKatsuhiko HiramatsuRyohei Kimura
    • Masayuki HoshinoKenichi MiyoshiYasuaki YudaKatsuhiko HiramatsuRyohei Kimura
    • H04B7/02
    • H04B7/0626H04B7/0417H04B7/0434H04B7/063H04B7/0689
    • It is possible to prevent lowering of a throughput of a radio communication system even when propagation path environments of an uplink line and downlink line are asymmetric. A maximum proper value calculation unit (115) calculates a maximum proper value from a channel matrix. A maximum proper value comparison unit (116) compares the maximum proper value with a maximum proper value of the downlink line reported separately from a base station. According to the comparison result obtained by the maximum proper value comparison unit (116), a proper mode initiative instruction unit (117) decides to pass the proper mode initiative to a communication partner or to the local device. When the initiative is to be passed to the local device, this fact is reported to a proper bam correction unit (118). When the proper beam correction unit (118) gets the proper mode initiative, the proper beam correction unit (118) corrects the correlation matrix by using the proper values of both of the downlink line and the uplink line and instructs a directivity forming unit (103) to form a proper beam according to the correlation matrix after the correction.
    • 即使上行链路和下行链路的传播路径环境不对称,也可以防止无线通信系统的吞吐量的降低。 最大适当值计算单元(115)从信道矩阵计算最大适当值。 最大适当值比较单元(116)将最大适当值与从基站分开报告的下行线路的最大适当值进行比较。 根据由最大适当值比较单元(116)获得的比较结果,正确的模式主动指示单元(117)决定将适当的模式主动通过通信对方或本地设备。 当该举措传递给本地设备时,这一事实报告给适当的巴姆纠正单位(118)。 当正确的光束校正单元(118)获得适当的模式主动时,适当的光束校正单元(118)通过使用下行链路线路和上行线路两者的适当值来校正相关矩阵,并且指示方向性形成单元(103 )根据校正后的相关矩阵形成适当的波束。