Design and development of an optical pressure sensing system using bellows as primary sensor

N. Mandal, B. Kumar, R. Sarkar
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Abstract

A new optical type pressure sensing system is proposed in this paper. Bellows, an elastic type sensing element is used to indicate the pressure in the form of displacement of bellows element. For automated process industries, the signal is required to be send to a remote location like control room. In order to send the mechanical movement of bellow corresponding to the applied pressure, to a control room the signal is to be converted in the form of electrical, pneumatic or optical signal. For inflammable industries optical signal transmission is preferred. In this work the displacement of bellow element is first converted into an electrical signal using hall probe sensor then it is converted into an optical signal using (MZI) Mach-Zehnder Interferometer. The proposed sensing system is designed and its theory of operation is developed. The experiment was done on the proposed system and the experimental characteristic shows very good linearity with excellent repeatability.
以波纹管为主要传感器的光学压力传感系统的设计与开发
本文提出了一种新型的光学压力传感系统。波纹管是一种弹性传感元件,以波纹管元件位移的形式来表示压力。对于自动化过程工业,需要将信号发送到远程位置,如控制室。为了使波纹管的机械运动与所施加的压力相对应,将信号转换为电气、气动或光学信号。对于易燃工业,首选光信号传输。在这项工作中,首先使用霍尔探头传感器将波纹管元件的位移转换为电信号,然后使用(MZI)马赫-曾德尔干涉仪将其转换为光信号。设计了该传感系统,并给出了其工作原理。实验结果表明,该系统具有良好的线性和重复性。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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