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Performance evaluation of fractional Fourier transform(FrFT) for time-frequency analysis of ultrasonic signals in NDE applications

机译:分数傅里叶变换(FrFT)在NDE应用中对超声信号进行时频分析的性能评估

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Recently, there has been a growing attention on fractional Fourier transform (FrFT) for time-frequency analysis. In this investigation, an FrFT-based signal decomposition algorithm is utilized to decompose ultrasonic signals into a linear combination of signal components. As a transformation tool, FrFT is employed to estimate an optimal transform order, which leads to the maximum amplitude response, or the highest kurtosis value in the fractional transform domain. Furthermore, a signal component is obtained by applying a window in the fractional domain and inverse FrFT. In an iterative manner, ultrasonic signals are decomposed into the signal components until a predefined stop criterion is satisfied. Analytical and simulation results show that FrFT is an alternative method to perform high-resolution analysis of nonstationary ultrasonic signals.
机译:近来,对于时频分析的分数阶傅里叶变换(FrFT)引起了越来越多的关注。在这项研究中,基于FrFT的信号分解算法用于将超声信号分解为信号分量的线性组合。作为变换工具,FrFT用于估计最佳变换阶数,这会导致分数变换域中的最大幅度响应或最高峰度值。此外,通过在分数域中应用窗口并逆FrFT获得信号分量。以迭代的方式,将超声信号分解为信号分量,直到满足预定的停止标准为止。分析和仿真结果表明,FrFT是对非平稳超声信号进行高分辨率分析的另一种方法。

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