基于田口法的反反射光纤位移传感器性能优化

S. Patil, A. Shaligram
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引用次数: 1

摘要

光纤位移传感器在工业上有着广泛的应用。复古反射式光纤位移传感器由平行光纤组成,在一定距离处有一个反射器。光被发射到传输光纤中,被反射器反射。这些反射光被接收光纤收集。接收到的光是反射器从光纤端面位移的函数。本文的目的是利用众所周知的田口法实现光纤位移传感器的鲁棒设计。该设计在制造公差的限制范围内考虑到所有噪声参数。对仿真结果进行了统计数据分析。在数据分析中,利用信号质量特性越大越好来寻找控制参数的影响。田口分析提出了影响FODS灵敏度和对噪声免疫的主要参数。选择源纤维倾角作为调节参数。利用其他控制参数对FODS设计进行微调,以达到最佳鲁棒性、最佳灵敏度、鲁棒性和最佳灵敏度三个品质。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Retro-Reflective Fiber Optic Displacement Sensor for Performance Optimization Using Taguchi Method
Fiber optic displacement sensors are widely used in industry. Retro reflective fiber optic displacement sensor consists of parallel fibers with a reflector at a distance. Light is launched into the transmitting fiber which gets reflected by reflector. This reflected light is collected by the receiving fiber. The received light is function of the displacement of the reflector from the fiber end faces. This paper is targeted to obtain a robust design for the fiber optic displacement sensor (FODS) using well known Taguchi method. The design takes care of all noise parameters within constraints of manufacturing tolerances. The statistical data analysis is performed on the simulated results. The larger the better signal to noise quality characteristics is used to find the effect of control parameters in the data analysis. Taguchi analysis suggests dominant parameters, which affects the sensitivity of the FODS and causes immunity to noise. A source fiber inclination angle is chosen as an adjustment parameter. Other control parameters are used for fine tuning of the FODS design for achieving three qualities viz. best robustness, optimized sensitivity and robustness and best sensitivity.
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