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首页> 外文期刊>Instrumentation and Measurement, IEEE Transactions on >Modeling of Light Intensity-Modulated Fiber-Optic Displacement Sensors
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Modeling of Light Intensity-Modulated Fiber-Optic Displacement Sensors

机译:光强调制光纤位移传感器的建模

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摘要

Light-intensity-modulated displacement sensors are currently extensively used in numerous applications. Most such sensors operate by utilizing a pair of adjacent optical fibers and a reflector. This scheme can provide a good sensing outcome, but its performance can be enhanced with the use of only a single optical fiber. Such displacement sensors have the benefits of higher sensitivity and operating range, because they can efficiently collect more light after a reflectance has occurred. Hence, this paper investigates a single optical fiber that emits and collects light while translating and rotating with respect to the main axis of the optical fiber. The Gaussian light-sensing behavior of these two cases is mathematically modeled, giving sensing characteristics such as linearity and sensitivity. Experimental results are presented for verification and validation of the models.
机译:当前,光强度调制位移传感器广泛用于许多应用中。大多数这样的传感器通过利用一对相邻的光纤和反射器来操作。该方案可以提供良好的感测结果,但是仅使用一根光纤就可以提高其性能。这种位移传感器具有更高的灵敏度和工作范围的优势,因为它们可以在发生反射后有效地收集更多的光。因此,本文研究了一种在相对于光纤主轴平移和旋转的同时发出并收集光的单根光纤。对这两种情况的高斯光感测行为进行了数学建模,从而给出了诸如线性和灵敏度之类的感测特性。实验结果用于模型的验证和确认。

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