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Method for acceleration measurement using a laser Doppler interferometer

机译:使用激光多普勒干涉仪进行加速度测量的方法

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摘要

A novel method for estimating acceleration directly from the digitized waveform of interference signals is proposed based on a laser Doppler interferometer. In this method, a second-order polynomial function is developed, of which the coefficients are calculated by fitting with the time and corresponding order of zero crossings. Acceleration is calculated as the product of the second-order coefficient and the wavelength of a laser. The performance of this method is evaluated by comparing with the zero crossing method (ZCM) and zero crossing fitting method (ZFM) in simulation. The results show that the accuracy of acceleration calculated by using this method is higher than those by using the ZCM and ZFM, particularly when the signal-to-noise ratio is lower than 40 dB.
机译:提出了一种基于激光多普勒干涉仪直接从干扰信号的数字化波形估计加速度的新方法。在这种方法中,开发了二阶多项式函数,其系数通过与时间和过零的相应阶数拟合来计算。加速度被计算为二阶系数和激光波长的乘积。通过与零交叉法(ZCM)和零交叉拟合法(ZFM)进行仿真比较,评估了该方法的性能。结果表明,使用该方法计算的加速度精度要高于使用ZCM和ZFM的加速度精度,尤其是在信噪比低于40 dB时。

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