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Measurement of fast-changing low velocities by photonic Doppler velocimetry

机译:用光子多普勒测速仪测量快速变化的低速

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摘要

Despite the increasing popularity of photonic Doppler velocimetry (PDV) in shock wave experiments, its capability of capturing low particle velocities while changing rapidly is still questionable. The paper discusses the performance of short time Fourier transform (STFT) and continuous wavelet transform (CWT) in processing fringe signals of fast-changing low velocities measured by PDV. Two typical experiments are carried out to evaluate the performance. In the laser shock peening test, the CWT gives a better interpretation to the free surface velocity history, where the elastic precursor, main plastic wave, and elastic release wave can be clearly identified. The velocities of stress waves, Hugoniot elastic limit, and the amplitude of shock pressure induced by laser can be obtained from the measurement. In the Kolsky-bar based tests, both methods show validity of processing the longitudinal velocity signal of incident bar, whereas CWT improperly interprets the radial velocity of the shocked sample at the beginning period, indicating the sensitiveness of the CWT to the background noise. STFT is relatively robust in extracting waveforms of low signal-to-noise ratio. Data processing method greatly affects the temporal resolution and velocity resolution of a given fringe signal, usually CWT demonstrates a better local temporal resolution and velocity resolution, due to its adaptability to the local frequency, also due to the finer time-frequency product according to the uncertainty principle.
机译:尽管光子多普勒测速仪(PDV)在冲击波实验中越来越受欢迎,但它在快速变化的同时捕获低颗粒速度的能力仍然值得怀疑。本文讨论了短时傅立叶变换(STFT)和连续小波变换(CWT)在处理PDV测量的快速变化的低速条纹信号中的性能。进行了两个典型的实验来评估性能。在激光冲击喷丸测试中,CWT可以更好地解释自由表面速度的历史,可以清楚地识别出弹性前体,主塑性波和弹性释放波。可以从测量中获得应力波的速度,Hugoniot弹性极限以及激光引起的冲击压力的幅度。在基于Kolsky-bar的测试中,这两种方法均显示了处理入射条的纵向速度信号的有效性,而CWT在开始时期不正确地解释了受冲击样品的径向速度,表明CWT对背景噪声的敏感性。 STFT在提取低信噪比的波形方面相对强大。数据处理方法极大地影响了给定条纹信号的时间分辨率和速度分辨率,通常CWT由于其对本地频率的适应性更好,还表现出更好的局部时间分辨率和速度分辨率,这也是由于根据不确定性原则。

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