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首页> 外文期刊>Journal of Optics >An intensity-modulated optical fiber sensor with concave mirror for measurement of displacement
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An intensity-modulated optical fiber sensor with concave mirror for measurement of displacement

机译:带凹面镜的强度调制光纤传感器,用于测量位移

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摘要

Two fiber intensity-modulated sensors are investigated and used in number of applications, including those in military, industry, biomedical, and aerospace. A common form of two fiber intensity-modulated optical fiber sensor performs its measurement by making use of a pair of straight optical fibers with a plane reflector. The reflected optical intensity is a function of distance between fiber tips and plane reflector as well as refractive index of the medium. This paper describes an alternative sensing structure with a concave reflector instead of a plane reflector and demonstrates the derivation of the geometric mathematical model for analyzing its sensing characteristics. The mathematical model shows that the blind region is minimized, when the plane reflector is replaced by a concave reflector. Such type of optical sensor can be used where space required for the measurement is the major limitation. Experimental results obtained confirm the model.
机译:研究了两种纤维强度调制传感器,并将其用于许多应用,包括军事,工业,生物医学和航空航天领域的传感器。两光纤强度调制光纤传感器的常见形式是通过使用一对带有平面反射器的直光纤进行测量。反射的光强度是光纤尖端与平面反射器之间的距离以及介质折射率的函数。本文介绍了使用凹面反射器代替平面反射器的另一种传感结构,并演示了用于分析其传感特性的几何数学模型的推导。数学模型表明,当用凹面反射镜代替平面反射镜时,盲区最小。这种类型的光学传感器可用于测量所需空间是主要限制的地方。获得的实验结果证实了该模型。

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