Nondestructive Evaluation by Joint Time-Frequency Analysis of Degraded SUS 316 Steel
Kun-Chan Lee, Jeong-Hwan Oh, Ki‐Woo Nam, Joo-Suk Lee
Abstract
Kun-Chan Lee, Jeong-Hwan Oh, Ki‐Woo Nam, Joo-Suk Lee
Abstract
Fourier transform has been one of the most commonly used tools in study of frequency characteristics of signal. However, based on the Fourier transform. it is hard to tell whether a signal's frequency contents evolve in time or not. Recently, to overcome Fourier transform fault. not to represent non-stationary signal, time-frequency analysis methods are developed and those can represent informations of signal's time and frequency at the same time. In this study we analysed ultrasonic signal for degraded SUS 316 with time-frequency analysis method. In particular the methods such as short time Fourier(STFT) and Wigner-Ville distribution(WVD) were used to extract frequency contents and characteristics from ultrasonic signals.
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Fourier transform has been one of the most commonly used tools in study of frequency characteristics of signal. However, based on the Fourier transform. it is hard to tell whether a signal's frequency contents evolve in time or not. Recently, to overcome Fourier transform fault. not to represent non-stationary signal, time-frequency analysis methods are developed and those can represent informations of signal's time and frequency at the same time. In this study we analysed ultrasonic signal for degraded SUS 316 with time-frequency analysis method. In particular the methods such as short time Fourier(STFT) and Wigner-Ville distribution(WVD) were used to extract frequency contents and characteristics from ultrasonic signals.
Key concepts: Short-time Fourier transform, Time–frequency analysis, Fourier transform, SIGNAL (programming language), Constant Q transform, Acoustics, Computer science, Signal processing