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Parameters selection for optimising time-frequency distributions and measurements of time-frequency characteristics of nonstationary signals

机译:优化时频分布的参数选择和非平稳信号时频特性的测量

摘要

The quadratic class of time-frequency distributions (TFDs) forms a set of tools which allow to effectively extract important information from a nonstationary signal. To determine which TFD best represents the given signal, it is a common practice to visually compare different TFDs' time-frequency plots, and select as best the TFD with the most appealing plot. This visual comparison is not only subjective, but also difficult and unreliable especially when signal components are closely-spaced in the time-frequency plane. To objectively compare TFDs, a quantitative performance measure should be used. Several measures of concentration/complexity have been proposed in the literature. However, those measures by being derived with certain theoretical assumptions about TFDs are generally not suitable for the TFD selection problem encountered in practical applications. The non-existence of practically-valuable measures for TFDs' resolution comparison, and hence the non-existence of methodologies for the signal optimal TFD selection, has significantly limited the use of time-frequency tools in practice. In this thesis, by extending and complementing the concept of spectral resolution to the case of nonstationary signals, and by redefining the set of TFDs' properties desirable for practical applications, we define an objective measure to quantify the quality of TFDs. This local measure of TFDs' resolution performance combines all important signal time-varying parameters, along with TFDs' characteristics that influence their resolution. Methodologies for automatically selecting a TFD which best suits a given signal, including real-life signals, are also developed. The optimisation of the resolution performances of TFDs, by modifying their kernel filter parameters to enhance the TFDs' resolution capabilities, is an important prerequisite in satisfying any additional application-specific requirements by the TFDs. The resolution performance measure and the accompanying TFDs' comparison criteria allow to improve procedures for designing high-resolution quadratic TFDs for practical time-frequency analysis. The separable kernel TFDs, designed in this way, are shown to best resolve closely-spaced components for various classes of synthetic and real-life signals that we have analysed.
机译:时频分布(TFD)的二次类形成了一组工具,这些工具可以从非平稳信号中有效提取重要信息。为了确定哪个TFD最能代表给定信号,通常的做法是在视觉上比较不同TFD的时频图,并选择最吸引人的TFD作为最佳选择。这种视觉上的比较不仅是主观的,而且是困难且不可靠的,特别是当信号分量在时频平面中紧密间隔时。为了客观地比较TFD,应使用定量性能指标。文献中已经提出了几种浓度/复杂度的测量方法。但是,通过对TFD的某些理论假设得出的那些措施通常不适合实际应用中遇到的TFD选择问题。缺乏用于TFD分辨率比较的实用价值度量,因此不存在用于信号最佳TFD选择的方法,这在实践中极大地限制了时频工具的使用。在本文中,通过将频谱分辨率的概念扩展和补充到非平稳信号的情况,并通过重新定义实际应用所需的TFDs属性集,我们定义了一种量化TFDs质量的客观措施。本地测量TFD的分辨率性能结合了所有重要的信号时变参数,以及影响其分辨率的TFD的特性。还开发了自动选择最适合给定信号(包括实际信号)的TFD的方法。通过修改TFD的内核过滤器参数以增强TFD的分辨率功能,优化TFD的分辨率性能是满足TFD的任何其他特定于应用的要求的重要前提。分辨率性能度量和随附的TFD的比较标准可改进为实际时频分析设计高分辨率二次TFD的程序。通过这种方式设计的可分离内核TFD被证明可以最好地解析出间隔很近的分量,以解决我们分析过的各种合成和现实信号。

著录项

  • 作者

    Sucic Victor;

  • 作者单位
  • 年度 2004
  • 总页数
  • 原文格式 PDF
  • 正文语种 {"code":"en","name":"English","id":9}
  • 中图分类

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