Simulation of the Array Signals Processing Based on Automatic Gain Control for Two-Wave Mixing Interferometer

Feiming Qian, Haijiang Zhu, Guangzhen Xing, Ping Yang
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引用次数: 1

Abstract

Laser ultrasonic testing represents an attractive method for non-contact measurements with high sensitivity and broad detection bandwidth, which make it possible to measure ultrasound field in some offensive environments. Because of the noise caused by serious scattering, the conventional optical interferometer cannot work properly on rough surfaces. The environmental noise is also a big uncertainty budget for the measuring results. In this paper, an array signals processing method for a new type of two-wave mixing interferometer is introduced. In order to calibrate the displacement of the target, a mirror driven by the piezoelectric transducer introduces a known displacement at a low frequency on the reference beam. In addition, the wavelet neural network(WNN) is applied to denoise the input signals. Moreover, an automatic gain control (AGC) scheme is employed to the output of the photodiode array which can calibrate the output sensitivity. Then according to the output sensitivity, the displacement of the target measured by the diode array can be demodulated. Both the out-plane and in-plane displacements can be measured simultaneously, which may result in a wide usage in non-destructive areas.
基于自动增益控制的双波混频干涉仪阵列信号处理仿真
激光超声检测是一种具有高灵敏度和宽检测带宽的非接触式测量方法,使在某些恶劣环境下测量超声场成为可能。由于严重的散射引起的噪声,传统的光学干涉仪无法在粗糙表面上正常工作。环境噪声对测量结果也是一个很大的不确定预算。介绍了一种新型双波混频干涉仪的阵列信号处理方法。为了校准目标的位移,由压电传感器驱动的反射镜在参考光束上引入一个已知的低频位移。此外,采用小波神经网络(WNN)对输入信号进行降噪处理。此外,光电二极管阵列的输出采用了自动增益控制(AGC)方案,可以校准输出灵敏度。然后根据输出灵敏度,对二极管阵列测量的目标位移进行解调。面外和面内位移可同时测量,可在非破坏性领域得到广泛应用。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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