首页> 外文会议>Electrical and Electronics Engineering, 2009. ELECO 2009 >Enhanced resolution fiber optic strain sensor based on mach-zehnder interferometer and displacement sensing principles
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Enhanced resolution fiber optic strain sensor based on mach-zehnder interferometer and displacement sensing principles

机译:基于马赫曾德尔干涉仪和位移传感原理的高分辨率光纤应变传感器

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In this study, a novel scheme for fiber optic strain sensor has been introduced. This scheme is indeed a Mach-Zehnder interferometer followed by a displacement sensor. The strain is applied to an optical fiber which is the main branch of the Mach-Zehnder interferometer and causes an alteration in the interferometer's output intensity. The output beam is then spread on a mirror located in front of the fiber head. The head of the fiber and the mirror form a displacement sensor configuration. The portion of the reflected beam, gathered by the fiber, is a function of the distance between the fiber head and the mirror. So, applying strain causes a new change in the gathered intensity due to the elongation of the fiber. The combination of the several effects in altering the detected power by variation in the applied strain makes the proposed sensor more sensitive.
机译:在这项研究中,介绍了一种新的光纤应变传感器方案。该方案的确是马赫曾德尔干涉仪,后面是位移传感器。应变被施加到光纤上,该光纤是马赫曾德尔干涉仪的主要分支,并导致干涉仪的输出强度发生变化。然后,输出光束在位于光纤头前面的反射镜上传播。光纤的头部和反射镜形成位移传感器配置。光纤收集的反射光束部分是光纤头和反射镜之间距离的函数。因此,由于纤维的伸长,施加应变会引起聚集强度的新变化。通过施加应变的变化来改变检测到的功率的几种效果的结合,使所提出的传感器更加灵敏。

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