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Mutual information rate of nonstationary statistical signals

机译:非间断统计信号的相互信息率

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摘要

The stochastic chirp-stationary (CS) signals are a kind of widely employed nonstationary signal model in communications and radar/sonar systems. However, the measurement of the information for the stochastic CS signals are absent yet. In this paper, the mutual information rate (MIR), which reflects the interdependence of two stochastic signals comprehensively, between two CS signals is proved to be exist. Later, to check the properties of the MIR in different fractional Fourier domains (FrFD), the criteria of the fractional Fourier transform (FrFT) decomposition of a stochastic signal are clarified. The MIR is proved to be an invariant in different FrFDs. In addition, the relationship of the MIR between the input and the output of a fractional filter is built. Based on these properties, two applications are proposed, saying a blind deconvolution algorithm and two methods for determining the frequency of a CS signal. Specifically, the previous application aims at the fractional convolution model. In addition, the second application are based on the measures of interdependence, namely the Pearson correlation function and the MIR, which provide theoretical framework for determining the frequency rate of a CS signal by finite sampling records in practical applications. Finally, the simulations show the applications of the MIR.
机译:随机啁啾静止(CS)信号是通信和雷达/声纳系统中的一种广泛采用的非间平信号模型。然而,尚未缺少随机CS信号的信息的测量。在本文中,证明了两种CS信号之间的两个随机信号相互依存的互信息速率(MIR)被证明存在。后来,为了检查不同分数傅里叶域(FRFD)中MIR的性质,阐明了随机信号的分数傅里叶变换(FRFT)分解的标准。 MIR被证明是不同FRFD的不变性。另外,建立了输入和分数滤波器的输出之间的MIR的关系。基于这些属性,提出了两种应用,说明盲解卷积算法和用于确定CS信号频率的两种方法。具体而言,先前的应用程序旨在旨在分数卷积模型。此外,第二申请基于相互依存的测量,即Pearson相关函数和MIR,其提供了通过在实际应用中的有限采样记录来确定CS信号的频率速率的理论框架。最后,模拟显示了MIR的应用。

著录项

  • 来源
    《Signal processing》 |2020年第6期|107531.1-107531.13|共13页
  • 作者单位

    Beijing Key Laboratory of Fractional Signals and Systems School of Information and Electronics Beijing Institute of Technology Beijing 100081 China;

    Beijing Key Laboratory of Fractional Signals and Systems School of Information and Electronics Beijing Institute of Technology Beijing 100081 China;

    Beijing Key Laboratory of Fractional Signals and Systems School of Information and Electronics Beijing Institute of Technology Beijing 100081 China;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    Mutual information rate (MIR); Entropy; Nonstationary; chirp-stationary signals; Fractional Fourier transform (FrFT);

    机译:相互信息率(MIR);熵;非运动;啁啾静止信号;分数傅里叶变换(FRFT);

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