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Time-frequency analysis and design of signals: The Wigner distribution and its applications.

机译:信号的时频分析和设计:维格纳分布及其应用。

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摘要

Time frequency representations provide us with an efficient way to process non-stationary signals and systems with time-dependent spectrum. In this thesis, a tutorial review of several time-frequency representations is presented. The historical development and the properties are discussed with the emphasis being placed on the Wigner distribution (WD).An efficient way to calculate the Cramer-Rao lower bound for the time-varying frequency estimation is obtained. The theoretical performance of the WD when applied to the estimation of this time-varying frequency is derived and the simulation examples are provided.Using the properties of the instantaneous spectrum, new algorithms are developed which can accurately estimate the frequencies of the non-stationary signals with fast varying amplitude. A particular example of the applications is the frequency estimation in Search and Rescue Satellite (SARSAT). For tests on real SARSAT signals, our new algorithms exhibit superior performance to other spectrum estimation methods.The Cramer-Rao bound (CRB) for the joint time delay and Doppler shift estimation is derived and it is proved that the joint estimates of these two parameters using time-frequency representations are optimum under high SNR in the sense that it is unbiased and the variance reaches the CRB. Several efficient methods are developed to obtain the optimum signal for the joint time delay and Doppler shift estimation under different practical constraints.Three important applications of time-frequency representations are studied. They are the tracking of instantaneous frequency, high resolution estimation of frequencies in the non-stationary environment, and the design of signals for optimum simultaneous estimation of time delay and Doppler shift.
机译:时频表示为我们提供了一种有效的方式来处理具有时间相关频谱的非平稳信号和系统。本文提出了几种时频表示的教程综述。讨论了Wigner分布(WD)的历史发展和性质,获得了一种用于计算随时间变化的频率的Cramer-Rao下界的有效方法。推导了WD在时变频率估计中的理论性能,并提供了仿真实例。利用瞬时频谱的性质,开发了可以精确估计非平稳信号频率的新算法。幅度快速变化。应用程序的一个特定示例是搜索和救援卫星(SARSAT)中的频率估计。为了在实际SARSAT信号上进行测试,我们的新算法表现出优于其他频谱估计方法的性能。得出了联合时延和多普勒频移估计的Cramer-Rao界(CRB),并证明了这两个参数的联合估计在无SNR且方差达到CRB的意义上,使用时频表示法在高SNR下是最佳的。提出了几种有效的方法来获得在不同实际约束下联合时延和多普勒频移估计的最佳信号。研究了时频表示的三个重要应用。它们是瞬时频率的跟踪,非平稳环境中频率的高分辨率估计,以及用于同时延迟和多普勒频移的最佳估计的信号设计。

著录项

  • 作者

    Jin, Qu.;

  • 作者单位

    McMaster University (Canada).;

  • 授予单位 McMaster University (Canada).;
  • 学科 Engineering Electronics and Electrical.
  • 学位 Ph.D.
  • 年度 1991
  • 页码 256 p.
  • 总页数 256
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

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