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Analysis of cross-correlation and wavelet de-noising for the reduction of the effects of dispersion in long-range ultrasonic testing

机译:分析互相关和小波降噪以减少远程超声测试中色散的影响

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Long-range ultrasonic testing (LRUT) involves transmitting a guided ultrasonic wave through a structure and receiving echoes caused by changes in acoustic impedance. There are several modes of propagation of the ultrasonic signal (wave modes) that depend on the structure and the test frequency. Some of these wave modes are dispersive: their velocity changes with frequency. Generally, LRUT procedures are designed such that non-dispersive wave modes are transmitted. However, interaction of the ultrasonic wave with the structure leads to mode conversions, some of which will be to dispersive wave modes. The effect of these dispersive wave modes is to reduce the signal-to-noise ratio (SNR) of the received signal. Cross-correlation and wavelet de-noising are considered here for reduction of the effect of dispersive wavemodes. An LRUT signal with dispersive and non-dispersive wave modes has been simulated and used to test these techniques. Experimental data have also been collected and used to evaluate further these techniques. Cross-correlation of the transmitted and received signals did not lead to significant improvement in SNR in either the simulated or experimental signals and led to a decrease in SNR in many of the simulated signals. Wavelet de-noising appeared to workwell on some of the simulated LRUT signals, where the amplitude of the non-dispersive mode was greater than that of the dispersive mode. With the experimental data this technique improved the SNR slightly, but led to distortion of the signal. The results show that neither technique appears to be able to effectively discriminate between dispersive and non-dispersive wave modes.
机译:远程超声波测试(LRUT)涉及通过结构传输引导的超声波并接收由声阻抗变化引起的回波。超声信号的传播方式有多种(波模式),具体取决于结构和测试频率。其中一些波模是分散的:它们的速度随频率而变化。通常,将LRUT程序设计为可传输非色散波模式。但是,超声波与结构的相互作用会导致模式转换,其中一些转换为色散波模式。这些色散波模式的作用是降低接收信号的信噪比(SNR)。为了减少色散波模的影响,此处考虑了互相关和小波降噪。具有色散和非色散波模式的LRUT信号已被仿真并用于测试这些技术。实验数据也已收集并用于进一步评估这些技术。发射信号和接收信号的互相关在模拟信号或实验信号中均未导致SNR的显着改善,而在许多模拟信号中均未导致SNR的降低。小波降噪似乎在某些模拟的LRUT信号上表现良好,其中非色散模式的幅度大于色散模式。利用实验数据,该技术可以稍微改善SNR,但会导致信号失真。结果表明,这两种技术似乎都无法有效地区分色散和非色散波模式。

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