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现有光纤位移传感器性能的优化算法

Optimizing Algorithm for Existing Fiber-Optic Displacement Sensor Performance.

作者信息

Elrawashdeh Zeina, Prelle Christine, Lamarque Frédéric, Revel Philippe, Galland Stéphane

机构信息

Institut Catholique d'Arts et Métiers (ICAM), Site of Grand Paris Sud, 77127 Lieusaint, France.

ICB UMR 6303, CNRS, Université Bourgogne Franche-Comté, UTBM, 90010 Belfort, France.

出版信息

Sensors (Basel). 2024 Jan 11;24(2):448. doi: 10.3390/s24020448.

Abstract

This paper describes the optimal design of a miniature fiber-optic linear displacement sensor. It is characterized by its ability to measure displacements along a millimetric range with sub-micrometric resolution. The sensor consists of a triangular reflective grating and two fiber-optic probes. The measurement principle of the sensor is presented. The design of the sensor's triangular grating has been geometrically optimized by considering the step angle of the grating to enhance the sensor's resolution. The optimization method revealed a global optimum at which the highest resolution is obtained.

摘要

本文描述了一种微型光纤线性位移传感器的优化设计。其特点是能够在毫米范围内测量位移,分辨率可达亚微米级。该传感器由一个三角形反射光栅和两个光纤探头组成。介绍了该传感器的测量原理。通过考虑光栅的步距角对传感器的三角形光栅进行了几何优化,以提高传感器的分辨率。优化方法揭示了一个全局最优值,在此处可获得最高分辨率。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/7f78/10819725/e0b6482e07ea/sensors-24-00448-g001.jpg

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