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首页> 外文期刊>Optics Communications: A Journal Devoted to the Rapid Publication of Short Contributions in the Field of Optics and Interaction of Light with Matter >Phase extraction of non-stationary interference signal in frequency scanning interferometry using complex shifted Morlet wavelets
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Phase extraction of non-stationary interference signal in frequency scanning interferometry using complex shifted Morlet wavelets

机译:复杂移位Mrlet小波扫描干涉测量中非静止干扰信号的相位提取

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摘要

Frequency scanning interferometry (FSI) with an external cavity diode laser is an effective technique for measuring the absolute distance of a target. However, because of the nonlinearity in optical frequency scanning, an interference signal becomes a non-stationary chirp signal, which is a critical issue to extract the phase of the interference signal for improving the accuracy of FSI. In this paper, a method for extracting the phase using complex shifted Morlet wavelet is proposed to accurately track the instantaneous phase of the chirp signal, and the selection of the wavelet parameters is also derived. The method is verified to be effective and stable by performing simulations and experiments. The experimental results demonstrate that the relative error of the phase extraction in the fractional part of interference signal is 1.5%;, and the standard deviation of absolute distance measurement is 1.69 mu m
机译:具有外腔二极管激光器的频率扫描干涉法(FSI)是用于测量目标的绝对距离的有效技术。 然而,由于光学频率扫描中的非线性,干扰信号成为非静止的啁啾信号,这是提取用于提高FSI精度的干扰信号的相位的关键问题。 在本文中,提出了一种使用复杂偏移的Morlet小波提取相位的方法,以精确地跟踪啁啾信号的瞬时阶段,并且还导出了小波参数的选择。 通过执行模拟和实验,验证该方法是有效和稳定的。 实验结果表明,干扰信号的分数部分中相位提取的相对误差是& 1.5%;,绝对距离测量的标准偏差是& 1.69 mu m

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