scispace - formally typeset
Open AccessJournal ArticleDOI

Separation of the Structure Signal by the Maximal Overlap Discrete Wavelet Transform and Fast Fourier Transform

Thanh Q. Nguyen
- 03 Aug 2021 - 
- Vol. 2021, pp 1-15
TLDR
In this article, the maximal overlap discrete wavelet transform (MODWT) method combined with the method of fast Fourier transform (FFT) is used to separate the synthetic vibration signal into a structure's discrete vibration and other extraneous vibrations.
Abstract
Power spectral density (PSD) is used for evaluating a structure’s vibration process. Moreover, PSD not only shows a discrete form of vibration but also presents various components in a vibration structure. The superposition of multiple vibration patterns on the same spectrum poses difficulty in analyzing the spectral information in the way needed to find the structure’s discrete vibration. This paper proposes a method for separating the synthetic vibration signal into a structure’s discrete vibration and other extraneous vibrations using the maximal overlap discrete wavelet transform (MODWT) method combined with the method of fast Fourier transform (FFT). With the combination of these two algorithms, MODWT and FFT, the signals of the synthesized vibration have been separated into component signals with different frequency ranges. This means that PSD will be formed, which is based on the combination of the single power spectra of the component signals. Thus, the single spectrum of each of these constructed components can be used to evaluate the types of discrete vibrations coexisting in a structure’s vibration process. The survey results in this paper show the sensitivity and suitability of select types of discrete vibrations to be separated out during the assessment of the structural change, so as to achieve the best possible plan for eliminating the unwanted and unexpected noise and vibration components.

read more

Content maybe subject to copyright    Report

Citations
More filters
References
More filters
Journal ArticleDOI

Covariance Structure Maximum-Likelihood Estimates in Compound Gaussian Noise: Existence and Algorithm Analysis

TL;DR: The derivation is based on some likelihood functions general properties like homogeneity and can be easily adapted to other recursive contexts and shows the convergence of this recursive scheme, ensured whatever the initialization.
Journal ArticleDOI

Damage detection of structures by wavelet analysis

TL;DR: In this paper, the authors provide a review of the research that has been conducted on damage detection by wavelet analysis, including continuous and discrete wavelet transform and its application to structural health monitoring (SHM).
Journal ArticleDOI

An augmented Kalman filter for force identification in structural dynamics

TL;DR: It is shown how, in the collocated case, more accurate results can be obtained with the augmented filter due to its incorporation of modeling errors, while better solutions are produced by classical deterministic methods as Dynamic Programming in which only the forces are estimated, and not the states as well.
Journal ArticleDOI

A weighted overlap-add method of short-time Fourier analysis/Synthesis

TL;DR: A new structure and a simplified interpretation of short-time Fourier synthesis using synthesis windows is presented and it is shown how this structure can be used for analysis/synthesis applications which require different analysis and synthesis rates, such as time compression or expansion.
Journal ArticleDOI

Applications of wavelet transforms to damage detection in frame structures

TL;DR: A simplified review of the theory behind the wavelet transform is given, and the ability of wavelets to detect crack-like damage in structures is demonstrated by means of several numerical examples as discussed by the authors.
Related Papers (5)