Instantaneous frequency identification for nonstationary signals of time-varying structures using enhanced synchroextracting wavelet transform and dynamic optimization

Yang Jiang, Xinyu Wang, Xi-Ling Zhang, Kai Zhang, Jing-Liang Liu
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引用次数: 0

Abstract

Civil engineering structures under ambient excitations are essentially time-varying and nonlinear structural systems and the resultant response signals exhibit non-stationarity. To reveal the time-varying characteristics of non-stationary signals, time frequency analysis methods with high resolutions are required. Although synchroextracting short time Fourier transform (SESTFT) is able to generate more energy concentrated time frequency representations and allow signal reconstruction, its major disadvantage is the window function is fixed. To address this issue, an enhanced synchroextracting wavelet transform (ESEWT) method is proposed to refine frequency bands by combing synchroextracting and continuous wavelet transform. After that, dynamic optimization (DO) is used to extract instantaneous frequency (IF) curves within the refined frequency bands. Two numerical examples and an experimental study case are investigated to illustrate the effectiveness and accuracy of the proposed method. The results demonstrate that the proposed ESEWT is capable of extracting frequency bands more accurately and its combination with DO identifies IFs of non-stationary signals better than current time frequency analysis methods such as SESTFT.
利用增强型同步提取小波变换和动态优化对时变结构的非稳态信号进行瞬时频率识别
环境激励下的土木工程结构本质上是时变非线性结构系统,由此产生的响应信号表现为非稳态。要揭示非稳态信号的时变特性,需要高分辨率的时频分析方法。虽然同步提取短时傅里叶变换(SESTFT)能生成能量更集中的时频表示并允许信号重构,但其主要缺点是窗口函数是固定的。针对这一问题,提出了一种增强同步提取小波变换(ESSWT)方法,通过将同步提取和连续小波变换相结合来细化频带。然后,使用动态优化(DO)提取细化频段内的瞬时频率(IF)曲线。研究了两个数值示例和一个实验研究案例,以说明所提方法的有效性和准确性。结果表明,与目前的时频分析方法(如 SESTFT)相比,所提出的 ESEWT 能够更准确地提取频带,而且它与 DO 的结合能更好地识别非稳态信号的瞬时频率。
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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