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Simultaneous measurement of vibration and parameters of a semiconductor laser using self-mixing interferometry

机译:使用自混合干涉仪同时测量半导体激光器的振动和参数

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摘要

Laser diode (LD)-based self-mixing interferometry (SMI) is a promising technique for noncontact sensing and its instrumentation. According to the well-known Lang-Kobayashi equations, an SMI waveform is shaped by multiple parameters, including linewidth enhancement factor (denoted as a), optical feedback level factor (denoted as C), and the movement of the external cavity of an LD. This paper presents a new algorithm for simultaneously retrieving the multiple parameters from a piece of SMI signal. First, a set of linear equations is derived based on the existing SMI model. By careful selection of data samples, the linear equations can be made independent and used to determine a set of variables, and thus the values of α and C, as well as the reconstruction coefficients of the external movement. The work in this paper lifts the restrictions existing in SMI-based sensing methods, such as prerequisite knowledge of either α and C or vibration information of an external target. Simulations and experiments are conducted to verify the proposed algorithm.
机译:基于激光二极管(LD)的自混合干涉术(SMI)是用于非接触式传感及其仪器的有前途的技术。根据众所周知的Lang-Kobayashi方程,SMI波形由多个参数整形,包括线宽增强因子(表示为a),光反馈电平因子(表示为C)以及LD外腔的运动。本文提出了一种新算法,可同时从一条SMI信号中检索多个参数。首先,根据现有的SMI模型导出一组线性方程。通过仔细选择数据样本,可以使线性方程式独立,并用于确定一组变量,从而确定α和C的值以及外部运动的重构系数。本文的工作消除了基于SMI的传感方法中存在的限制,例如对α和C的先决知识或外部目标的振动信息。仿真和实验进行了验证该算法。

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