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    • 1. 发明申请
    • Data transmission method and data reception method
    • 数据传输方法和数据接收方法
    • US20070121750A1
    • 2007-05-31
    • US10573044
    • 2005-03-09
    • Naganori ShirakataYasuo HaradaKoichiro TanakaTomohiro KimuraShuya HosokawaYoshio Urabe
    • Naganori ShirakataYasuo HaradaKoichiro TanakaTomohiro KimuraShuya HosokawaYoshio Urabe
    • H04L1/02
    • H04L27/2657H04L25/0204H04L27/2613H04L27/2675
    • In a transfer apparatus to which MIMO-OFDM is applied, a data transmission method and a data reception method are provided in which, even when there are frequency errors varying among transfer paths, the precision of estimation of an inverse propagation coefficient function can be improved, thereby making it possible to suppress a degradation in characteristics. Among symbols composed of a plurality of subcarriers orthognal to each other, the transfer apparatus uses, as a synchronization symbol, a symbol in which predetermined amplitudes and phases are assigned to a plurality of subcarriers spaced at predetermined frequency intervals. The synchronization symbol is divided into transmission antennas to generate a plurality of synchronization subsymbols, which are in turn simultaneously transmitted from a plurality of transmission antennas. A reception apparatus estimates a frequency error for each transfer path based on synchronization subsymbols included in signals received by a plurality of reception antennas, and based on the estimated frequency errors, corrects the received signals.
    • 在应用MIMO-OFDM的传送装置中,提供数据传输方法和数据接收方法,其中即使在传输路径之间存在频率误差变化的情况下,也可以提高反向传播系数函数的估计精度 ,从而可以抑制特性的劣化。 在由彼此正交的多个子载波组成的符号之中,传送装置使用将预定的幅度和相位分配给以预定频率间隔隔开的多个子载波的符号作为同步符号。 同步符号被分成发送天线以产生多个同步子符号,这些同步子符号又从多个发送天线同时发送。 接收装置基于由多个接收天线接收的信号中包含的同步子符号估计每个传送路径的频率误差,并且基于估计的频率误差来校正接收到的信号。
    • 3. 发明授权
    • Data transmission method and data reception method
    • 数据传输方法和数据接收方法
    • US07702027B2
    • 2010-04-20
    • US10573044
    • 2005-03-09
    • Naganori ShirakataYasuo HaradaKoichiro TanakaTomohiro KimuraShuya HosokawaYoshio Urabe
    • Naganori ShirakataYasuo HaradaKoichiro TanakaTomohiro KimuraShuya HosokawaYoshio Urabe
    • H04B7/02
    • H04L27/2657H04L25/0204H04L27/2613H04L27/2675
    • In a transfer apparatus to which MIMO-OFDM is applied, a data transmission method and a data reception method are provided in which, even when there are frequency errors varying among transfer paths, the precision of estimation of an inverse propagation coefficient function can be improved, thereby making it possible to suppress a degradation in characteristics. Among symbols composed of a plurality of subcarriers orthognal to each other, the transfer apparatus uses, as a synchronization symbol, a symbol in which predetermined amplitudes and phases are assigned to a plurality of subcarriers spaced at predetermined frequency intervals. The synchronization symbol is divided into transmission antennas to generate a plurality of synchronization subsymbols, which are in turn simultaneously transmitted from a plurality of transmission antennas. A reception apparatus estimates a frequency error for each transfer path based on synchronization subsymbols included in signals received by a plurality of reception antennas, and based on the estimated frequency errors, corrects the received signals.
    • 在应用MIMO-OFDM的传送装置中,提供数据传输方法和数据接收方法,其中即使在传输路径之间存在频率误差变化的情况下,也可以提高反向传播系数函数的估计精度 ,从而可以抑制特性的劣化。 在由彼此正交的多个子载波组成的符号之中,传送装置使用将预定的幅度和相位分配给以预定频率间隔隔开的多个子载波的符号作为同步符号。 同步符号被分成发送天线以产生多个同步子符号,这些同步子符号又从多个发送天线同时发送。 接收装置基于由多个接收天线接收的信号中包含的同步子符号估计每个传送路径的频率误差,并且基于估计的频率误差来校正接收到的信号。
    • 5. 发明授权
    • Apparatus and method of OFDM demodulation
    • OFDM解调的装置和方法
    • US06993083B1
    • 2006-01-31
    • US09597764
    • 2000-06-20
    • Naganori ShirakataTomohiro KimuraKoichiro TanakaHideki NakaharaYasuo HaradaShuya Hosokawa
    • Naganori ShirakataTomohiro KimuraKoichiro TanakaHideki NakaharaYasuo HaradaShuya Hosokawa
    • H04L7/04
    • H04L27/2665H04L27/2662
    • An apparatus and method for OFDM demodulation establish symbol synchronization to minimize between-symbol interference even under an environment where multipath occurs.An incoming signal is an OFDM signal including a transmission symbol structured by a valid symbol period and a guard interval, and a predetermined synchronization symbol is included in the OFDM signal for every transmission frame. A correlator calculates how a signal generated by a synchronization symbol generator and the OFDM signal are correlated. A correlation calculator then calculates a correlation therefrom. An integrator integrates the calculated correlation by the guard interval. A timing determination device determines symbol timing from the integrated correlation. An FFT window generator outputs operation timing for Fourier transform from the determined symbol timing. Based on the signal outputted from the FFT window generator, the apparatus for OFDM demodulation extracts a signal in the valid symbol period from the transmission symbol for demodulation.
    • 即使在发生多路径的环境下,用于OFDM解调的装置和方法建立符号同步以最小化符号间干扰。 输入信号是包括由有效符号周期和保护间隔构成的发送符号的OFDM信号,并且对于每个发送帧,在OFDM信号中包括预定的同步符号。 相关器计算由同步符号发生器和OFDM信号产生的信号的相关性。 然后,相关计算器从其计算相关性。 积分器将计算的相关性与保护间隔进行积分。 定时确定装置从综合相关确定符号定时。 FFT窗口生成器从所确定的符号定时输出用于傅里叶变换的操作定时。 基于从FFT窗口生成器输出的信号,OFDM解调装置从用于解调的发送符号中提取有效符号周期中的信号。