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首页> 外文期刊>Advances in Adaptive Data Analysis >ON HILBERT SPECTRAL REPRESENTATION: A TRUE TIME-FREQUENCY REPRESENTATION FOR NONLINEAR AND NONSTATIONARY DATA
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ON HILBERT SPECTRAL REPRESENTATION: A TRUE TIME-FREQUENCY REPRESENTATION FOR NONLINEAR AND NONSTATIONARY DATA

机译:关于希尔伯特谱表示:非线性和非平稳数据的真实时间频率表示

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摘要

As the original definition on Hilbert spectrum was given in terms of total energy and amplitude, there is a mismatch between the Hilbert spectrum and the traditional Fourier spectrum, which is defined in terms of energy density. Rigorous definitions of Hilbert energy and amplitude spectra are given in terms of energy and amplitude density in the time-frequency space. Unlike Fourier spectral analysis, where the resolution is fixed once the data length and sampling rate is given, the time-frequency resolution could be arbitrarily assigned in Hilbert spectral analysis (HSA). Furthermore, HSA could also provide zooming ability for detailed examination of the data in a specific frequency range with all the resolution power. These complications have made the conversion between Hilbert and Fourier spectral results difficult and the conversion formula is elusive until now. We have derived a simple relationship between them in this paper. The conversion factor turns out to be simply the sampling rate for the full resolution cases. In case of zooming, there is another additional multiplicative factor. The conversion factors have been tested in various cases including white noise, delta function, and signals from natural phenomena. With the introduction of this conversion, we can compare HSA and Fourier spectral analysis results quantitatively.
机译:由于希尔伯特频谱的原始定义是根据总能量和振幅给出的,因此希尔伯特频谱与传统傅立叶频谱之间存在失配,后者是根据能量密度定义的。根据时频空间中的能量和幅度密度,给出了希尔伯特能量和幅度谱的严格定义。与傅立叶光谱分析不同,傅立叶光谱分析的分辨率在确定数据长度和采样率后就固定了,而时频分辨率可以在希尔伯特光谱分析(HSA)中任意指定。此外,HSA还可以提供缩放功能,以使用所有分辨率来详细检查特定频率范围内的数据。这些复杂因素使希尔伯特和傅立叶光谱结果之间的转换变得困难,并且转换公式至今仍难以捉摸。我们在本文中得出了它们之间的简单关系。事实证明,转换因子仅是全分辨率情况下的采样率。在缩放的情况下,还有另一个附加的乘法因子。已经在各种情况下测试了转换因子,包括白噪声,德尔塔函数和自然现象的信号。通过引入这种转换,我们可以定量比较HSA和傅立叶光谱分析结果。

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