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One- and two-dimensional single-mode differential fiber-optic displacement sensor for submillimeter measurements

机译:一维和二维单模差分光纤位移传感器,用于亚毫米波测量

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摘要

Using the overlap integral method and the Gaussian approximation for the single-mode fiber-optic field, the working principle of one- and two-dimensional differential fiber-optic displacement sensors for sub-millimeter measurements is demonstrated. The sensors consist of one emitting fiber and two or three receiving fibers, respectively, for the one- and two-dimensional sensors. Sensor responses are intrinsically linear over a wide range of travels. Moreover, for the two-dimensional sensor, each axis of displacement can be measured independently. Sensor responses are simulated experimentally using a highly precise robot. Linearity, travel, and sensitivity are characterized for the different gap distance between the emitting and receiving fibers. A design chart that includes nonlinearity error, travel, sensitivity, and gap is finally proposed. (c) 2008 Optical Society of America.
机译:利用重叠积分法和单模光纤场的高斯近似,论证了用于亚毫米测量的一维和二维差分光纤位移传感器的工作原理。对于一维和二维传感器,传感器分别由一根发射光纤和两根或三根接收光纤组成。传感器响应在很大范围内都是线性的。此外,对于二维传感器,每个位移轴都可以独立测量。传感器响应是使用高精度机器人通过实验进行模拟的。针对发射和接收光纤之间的不同间隙距离来表征线性,传播和灵敏度。最后提出了包括非线性误差,行程,灵敏度和间隙的设计图。 (c)2008年美国眼镜学会。

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