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Channel blind identification based on cyclostationarity and group delay

机译:基于循环平稳性和群时延的信道盲识别

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摘要

A new approach for channel blind identification based on second order cyclostationary statistics and the group delay has been proposed. In this, two methods are proposed. In both the methods, the correction is applied to the basic phase estimate for both the poles and zeros, in the group delay domain. The basic phase estimate is derived from the spectral correlation density (SCD) of the system output. In the first method, the phase correction is based on magnitude group delay. In the second method, not only the phase correction but also an improved system magnitude estimate of better variance and frequency resolution is derived based on modified magnitude group delay. The results indicate a significant improvement in performance for both the methods. For the first method in the absence of noise, the percentage normalized mean square error is reduced by about 85% over that of the existing non-parametric method. The second method in the presence of noise (SNR = 5 dB), provides a reduction of 74% over the existing non-parametric method and 57% over the existing combined parametric and non-parametric methods.
机译:提出了一种基于二阶循环平稳统计和群时延的信道盲识别新方法。在此,提出了两种方法。在这两种方法中,校正均应用于群延迟域中的零点和零点的基本相位估计。基本相位估计是从系统输出的频谱相关密度(SCD)得出的。在第一种方法中,相位校正基于幅度组延迟。在第二种方法中,不仅基于改进的幅度组延迟,还可以导出相位校正,还可以得出具有更好方差和频率分辨率的改进系统幅度估计。结果表明两种方法的性能都有显着改善。对于第一种没有噪声的方法,与现有非参数方法相比,归一化均方误差百分比降低了约85%。在存在噪声(SNR = 5 dB)的情况下,第二种方法比现有的非参数方法减少了74%,比现有的组合参数和非参数方法减少了57%。

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