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Improving the measurement performance for a self-mixing interferometry-based displacement sensing system

机译:改进基于自混合干涉测量的位移传感系统的测量性能

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摘要

Approaches that are, to our knowledge, novel, are proposed in this paper to improve the accuracy performance of self-mixing interferometry (SMI) for displacement measurement. First, the characteristics associated with signals observed in SMI systems are studied, based on which a new procedure is proposed for achieving accurate estimation of the laser phase. The studies also revealed the reasons for the inherent errors associated with the existing SMI-based techniques for displacement measurement. Then, this paper presents a new method for estimating the optical feedback level factor (denoted by C) in real time. Combining the new algorithms for estimating the laser phase and updating C value, the paper finally presents a novel technique for displacement measurement with improved accuracy performance in contrast to existing techniques. The proposed technique is verified by both simulation and experimental data.
机译:据我们所知,本文提出了一些方法来提高自混合干涉测量(SMI)的位移测量精度。首先,研究了与在SMI系统中观察到的信号相关的特性,在此基础上,提出了一种新的程序来实现激光相位的准确估计。研究还揭示了与现有基于SMI的位移测量技术相关的固有误差的原因。然后,本文提出了一种实时估计光反馈水平因子(用C表示)的新方法。结合用于估计激光相位和更新C值的新算法,本文最终提出了一种与现有技术相比具有改进的精度性能的位移测量新技术。仿真和实验数据均验证了该技术的有效性。

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