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Robust Detection of Non-Regular Interferometric Fringes From a Self-Mixing Displacement Sensor Using Bi-Wavelet Transform

机译:使用双小波变换的自混合位移传感器对非规则干涉条纹的鲁棒检测

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摘要

An innovative signal processing method based on custom-made wavelet transform (WT) is presented for robust detection of fringes contained in the interferometric signal of self-mixing (SM) laser diode sensors. It enables the measurement of arbitrarily-shaped vibrations even in the corruptive presence of speckle. Our algorithm is based on the pattern recognition capability of bespoke WTs for detecting SM fringes. Once the fringes have been correctly detected, phase unwrapping methods can be applied to retrieve the complete instantaneous phase of the SM signals. Here, the novelty consists in using two distinct mother wavelets Ψr(t) and Ψd(t) specifically designed to distinguish SM patterns as well as the displacement direction. The peaks, i.e. the maxima modulus of WT, then allow the detection of the fringes.
机译:提出了一种基于定制小波变换(WT)的创新信号处理方法,用于鲁棒检测自混合(SM)激光二极管传感器的干涉信号中包含的条纹。即使在斑点散乱的情况下,也可以测量任意形状的振动。我们的算法基于用于定制SM条纹的定制WT的模式识别能力。一旦正确检测到条纹,便可以应用相位解缠方法来检索SM信号的完整瞬时相位。在这里,新颖之处在于使用了两个独特的母子波Ψr(t)和Ψd(t),这些子波专门设计用来区分SM模式以及位移方向。峰值,即WT的最大模量,然后允许检测条纹。

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