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Journal ArticleDOI

Wavelet transform analysis of transient wave propagation in a dispersive medium

Taner Önsay, +1 more
- 01 Mar 1994 - 
- Vol. 95, Iss: 3, pp 1441-1449
TLDR
In this paper, the wavelet transform is applied to the analysis of transient waves propagating in a dispersive medium, and the similarity in the fundamental characteristics of the analysis tool and the physical phenomena are exploited during the decomposition of the measured signals.
Abstract
The wavelet transform is applied to the analysis of transient waves propagating in a dispersive medium. Experimental techniques are employed to measure the transient flexural vibrations of an impact excited uniform beam. The similarity in the fundamental characteristics of the analysis tool and the physical phenomena are exploited during the decomposition of the measured signals. The wavelet transform of the acceleration response resulted in a time‐scale representation which provided a clear exposition of the time evolution of the spectral components during the dispersion process. The relation between the wavelet transform and the group properties of the dispersed waveform are emphasized. In the applications to finite systems, the efficacy of the wavelet transform is demonstrated by analyzing complex transient wave‐interference patterns which evolve over wide spectral ranges. An interesting periodic pulse reformation phenomena is uncovered on a uniform beam with free boundaries. Following the dispersion and the multiple reflections of the bending waves, the original impulsive waveform is found to be reconstituted periodically in time. Based on the physical examples, the advantages and shortcomings of the wavelet transform are discussed.

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Journal ArticleDOI

Low-oscillation complex wavelets

TL;DR: The authors believe that low oscillation complex wavelets have wide applicability to other practical signal analysis problems, and their possible application to two such problems is discussed briefly—the interrogation of arrhythmic ECG signals and the detection and characterization of coherent structures in turbulent flow fields.
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High-Frequency Low-Loss Ultrasonic Modes in Imbedded Bars

TL;DR: In this paper, the dispersion relationship of a system comprising a circular bar imbedded in a solid medium having a lower acoustic impedance than the bar has been predicted, and measurements to confirm the predictions have been carried out for this case.
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Simulation of ultrasound pulse propagation in lossy media obeying a frequency power law

TL;DR: A method is proposed to simulate the propagation of a broadband ultrasound pulse in a lossy medium whose attenuation exhibits a power law frequency dependence using a bank of Gaussian filters and a time causal model.
Journal ArticleDOI

An algorithm for the continuous Morlet wavelet transform

TL;DR: In this paper, the energy density over time or frequency that is obtained with the wavelet transform is discussed and an efficient algorithm is suggested to calculate the continuous transform with the Morlet wavelet.
Journal ArticleDOI

Effectiveness of the continuous wavelet transform in the analysis of some dispersive elastic waves

TL;DR: In this article, the performance of the continuous wavelet transform (CWT) and the short-time Fourier transform (STFT) was compared for the analysis of elastic flexural waves generated by an impact in a solid circular cylinder.