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首页> 外文期刊>Journal of Modern Optics >Finite element analysis of an optical fibre electric field sensor using piezoelectric polymer coating
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Finite element analysis of an optical fibre electric field sensor using piezoelectric polymer coating

机译:使用压电聚合物涂层的光纤电场传感器的有限元分析

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摘要

A novel approach for analysing an optical fibre electric field sensor by using the finite element method is presented. A singlemode optical fibre carrying a transversely poled piezoelectric poly(vinylidene fluoride) polymer coating was successfully modelled by using three-dimensional analysis. The response of the optical fibre electric field sensor was determined over a wide frequency range from 100 Hz to 50 MHz. The modelling predicts a phase shift of 0.019 rad V-1 m(-1) in the low frequency (axially unconstrained) region and 0.00082 rad V-1 m(-1) in the high frequency (axially constrained) region. At frequencies higher than 7 MHz the optical response is dominated by radial resonances of the fibre-jacket composite. Good agreement exists between the resonance peaks predicted by the simulation and those theoretically calculated using composite theory. [References: 12]
机译:提出了一种利用有限元方法分析光纤电场传感器的新方法。通过使用三维分析成功地建模了带有横向极化压电聚偏二氟乙烯聚合物涂层的单模光纤。在从100 Hz到50 MHz的宽频率范围内确定了光纤电场传感器的响应。该模型预测在低频(轴向不受约束)区域的相移为0.019 rad V-1 m(-1),在高频(轴向受约束)区域的相移为0.00082 rad V-1 m(-1)。在高于7 MHz的频率下,光学响应主要由纤维夹套复合材料的径向共振决定。通过仿真预测的共振峰与使用复合理论理论计算的共振峰之间存在良好的一致性。 [参考:12]

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