Hilbert Envelope Extraction from Real Discrete Finite Signals Considering the Nonlocality of Hilbert Transform

Ponomareva Olga, Ponomarev Alexey, Smirnova Natalia
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引用次数: 8

Abstract

Methods of determining the envelope (instantaneous amplitude) of a real signal for continuous and discrete cases are investigated. The analysis of advantages and disadvantages of existing methods for extraction the envelope of a real signal for continuous and discrete cases are given. The efficiency of the choice of determining the conjugate signal by Hilbert transform method is substantiated. The problem of determining Hilbert envelope for real, discrete and finite signals by the methods of discrete Fourier transform (DFT) and discrete-time Fourier transform (DTFT) is considered. The reason for the large relative errors in the measurement of Hilbert envelopes by DFT method is revealed. A new effective method and an effective method for measuring the envelope of a real, discrete, finite signal is developed, which reduces the relative error of its measurement by an order of magnitude and reduces by an order of magnitude the computational cost and the necessary memory for implementing the method as well. The theoretical results obtained in the work are confirmed by the results of numerical modeling.
考虑Hilbert变换非局域性的实数离散有限信号的Hilbert包络提取
研究了连续和离散情况下确定实信号包络(瞬时振幅)的方法。分析了现有的连续和离散实信号包络提取方法的优缺点。证明了用希尔伯特变换法确定共轭信号的选择效率。研究了用离散傅里叶变换(DFT)和离散时间傅里叶变换(DTFT)方法确定实数、离散和有限信号的希尔伯特包络线问题。揭示了DFT法测量希尔伯特包络时相对误差较大的原因。提出了一种测量真实、离散、有限信号包络线的新方法和有效方法,使测量的相对误差降低了一个数量级,并使实现该方法所需的计算量和存储空间降低了一个数量级。数值模拟结果证实了本文所得到的理论结果。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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