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    • 5. 发明申请
    • MIMO receiver, MIMO reception method and wireless communication system
    • MIMO接收机,MIMO接收方式和无线通信系统
    • US20060199557A1
    • 2006-09-07
    • US11365669
    • 2006-03-02
    • Masayuki KimataShousei Yoshida
    • Masayuki KimataShousei Yoshida
    • H04B1/10
    • H04B7/0684H04B1/7097H04B7/04H04W52/16H04W52/42
    • A MIMO receiver, a MIMO reception method and a wireless communication system capable of accurate MMSE control even when each transmit antenna uses a different chip power ratio in MIMO filter reception. A correction coefficient calculator receives as input the chip power ratio of each transmit antenna, and estimates such pilot power that renders the chip power ratio of each transmit antenna equal to that of a reference transmit antenna. Thereby, the correction coefficient calculator calculates a correction coefficient βm to correct the actual pilot power of each transmit antenna. A weight calculator receives as input transmission channel impulse responses transferred into frequency domain by FFT sections, chip noise power estimated by a chip noise estimation section, and the correction coefficient βm obtained by the correction coefficient calculator. The weight calculator calculates filter weights according to the minimum mean square error (MMSE) criterion.
    • 即使在MIMO滤波器接收中每个发射天线使用不同的码片功率比时,MIMO接收机,MIMO接收方式也能够进行精确的MMSE控制的无线通信系统。 校正系数计算器接收每个发射天线的芯片功率比作为输入,并且估计使每个发射天线的芯片功率比等于参考发射天线的芯片功率比的导频功率。 因此,校正系数计算器计算校正系数βm以校正每个发射天线的实际导频功率。 权重计算器接收通过FFT部分输入到频域的输入传输信道脉冲响应,由芯片噪声估计部分估计的芯片噪声功率和由校正系数计算器获得的校正系数βm。 权重计算器根据最小均方误差(MMSE)标准计算滤波器权重。
    • 7. 发明授权
    • Reception quality measuring apparatus and reception quality measuring method
    • 接收质量测量仪器和接收质量测量方法
    • US07949040B2
    • 2011-05-24
    • US12153001
    • 2008-05-12
    • Shousei YoshidaMasayuki Kimata
    • Shousei YoshidaMasayuki Kimata
    • H04B3/46H04B17/00H04Q1/20
    • H04B17/336
    • A reception quality measuring apparatus of the present invention comprises a first sub-carrier averaging unit for averaging and outputting a channel gain after equalization estimated on the basis of the pilot signal over a sub-carrier, a first power calculation unit for calculating the power of a signal output from the first sub-carrier averaging unit and outputting the same as signal power, a pilot replica generator for generating and outputting a pilot signal replica with respect to a zero-timing signal component based on the zero-timing signal component when a signal x(n) in the time domain after equalization corresponding to the equalized signal is n=0, and also based on a previously set pilot code characteristic, a subtractor for subtracting the pilot signal replica output from the pilot replica generator from the equalized signal and outputting the result as an interference signal, a second power calculation unit for calculating and outputting the power of the interference signal output from the subtractor, a second sub-carrier averaging unit for averaging the power output from the second power calculation unit over the sub-carrier and outputting the result as interference power, and a divider for dividing the signal power output from the first power calculation unit by the interference power output from the second sub-carrier averaging unit to calculate a reception quality after equalization.
    • 本发明的接收质量测量装置包括:第一子载波平均单元,用于根据子载波上的导频信号来估计均衡后的均衡和输出信道增益;第一功率计算单元,用于计算第 从第一副载波平均化单元输出的信号并将其作为信号功率输出的导频副本发生器,用于当基于零定时信号分量生成并输出关于零定时信号分量的导频信号副本时, 对于均衡信号的均衡后的时域中的信号x(n)为n = 0,并且还基于预先设定的导频代码特性,减法器,用于从均衡信号中减去从导频副本发生器输出的导频信号副本 并输出作为干扰信号的结果;第二功率计算单元,用于计算并输出干扰信号的功率 从所述减法器输出的第二子载波平均化单元,用于对从所述副载波上的所述第二功率计算单元输出的功率进行平均,并输出所述结果作为干扰功率;以及除法器,用于对从所述第一功率计算 通过从第二副载波平均化单元输出的干扰功率单位来计算均衡后的接收质量。
    • 8. 发明申请
    • RECEPTION METHOD AND RECEIVER
    • 接收方式和接收方
    • US20100208718A1
    • 2010-08-19
    • US12445886
    • 2007-10-16
    • Shousei YoshidaMasayuki Kimata
    • Shousei YoshidaMasayuki Kimata
    • H04W40/00
    • H04L27/2657H04L27/265
    • To provide a reception method and a reception device in which a base station can correct a frequency offset contained in a reception signal and realize an excellent reception characteristic by using simple reception mechanism of a frequency region in a radio system of the frequency division multiplex type. [Means for Solving Problems] A base station includes: a DFT unit which converts reception signals from a plurality of mobile stations communicating by radio communication of the frequency division multiplex method all at once into signals of a frequency region; a demapping unit which recognizes user signals corresponding to respective mobile stations by using subcarriers associated with respective mobile stations from the signals of the converted frequency region; a corrected signal generation unit which creates a correction signal for correcting a user signal frequency offset for each of the user signals; a frequency conversion unit which corrects the frequency offset of the user signal by the correction signal; and a demodulation unit which demodulates each of the corrected user signals.
    • 为了提供接收方法和接收装置,其中基站可以通过使用频分多路复用类型的无线电系统中的频率区域的简单接收机制来校正包含在接收信号中的频率偏移并实现优异的接收特性。 解决问题的手段基站包括:DFT单元,其将来自多个移动站的接收信号通过频分多路复用方法的无线电通信一次全部转换为频率区域的信号; 解映射单元,其通过使用与转换的频率区域的信号相关联的与各个移动站相关联的子载波来识别与各个移动站相对应的用户信号; 校正信号生成单元,其创建用于校正每个用户信号的用户信号频率偏移的校正信号; 频率转换单元,其通过所述校正信号校正所述用户信号的频率偏移; 以及解调单元,其对每个经校正的用户信号进行解调。