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首页> 外文期刊>Sensors and Actuators, A. Physical >Theoretical and experimental study of self-reference intensity-modulated plastic fibre optic linear array displacement sensor
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Theoretical and experimental study of self-reference intensity-modulated plastic fibre optic linear array displacement sensor

机译:自参考强度调制塑料光纤线性阵列位移传感器的理论与实验研究

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摘要

A self-reference intensity-modulated plastic fibre optic displacement sensor of linear array configuration is presented in this paper. It consists of receivers categorised into two reference groups. The effect of the number of receivers in each reference group on the group and displacement ratio responses is investigated. Theoretical analysis, based on Gaussian beam model for multiple receivers at different offset distances, is presented. Simulation results that are based on the derived model are employed to study the ratio function for different reference groups. The predicted sensor performance, in terms of linear range and sensitivity, is verified by experiment. There is a very good agreement between the predicted and measured characteristics. The effects of the number of receivers in each reference group on linear operation range and sensitivity are compared and discussed. Both theoretical and experimental results show that the optimal linear array configuration is the (10,1) configuration. This configuration gives the best performance in terms of sensitivity and linear operational range and it is shown to have a linear sensitivity of 0.25 mm(-1) with non-linearity error of less than 2.0% (without additional nonlinear compensation) within a linear operation range of 15 mm. In addition, the linear range of the optimal linear array (10,1) configuration is up to 10 times greater than existing plastic fibre configurations, and about 30 times greater than existing glass fibre configurations. (C) 2014 Elsevier B.V. All rights reserved.
机译:提出了一种自参考强度调制的线性阵列塑料光纤位移传感器。它由分为两个参考组的接收器组成。研究了每个参考组中接收器数量对组和位移比响应的影响。基于高斯波束模型,针对不同偏移距离的多个接收器进行了理论分析。基于导出模型的仿真结果用于研究不同参考组的比率函数。实验验证了在线性范围和灵敏度方面预测的传感器性能。预测特性和测量特性之间有很好的一致性。比较并讨论了每个参考组中接收器数量对线性工作范围和灵敏度的影响。理论和实验结果均表明,最佳线性阵列配置为(10,1)配置。这种配置在灵敏度和线性工作范围方面提供了最佳性能,并且在线性操作中显示出的线性灵敏度为0.25 mm(-1),非线性误差小于2.0%(无需额外的非线性补偿)范围为15毫米。此外,最佳线性阵列(10,1)配置的线性范围最多是现有塑料纤维配置的10倍,是现有玻璃纤维配置的约30倍。 (C)2014 Elsevier B.V.保留所有权利。

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