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一种具有增强设计灵活性的新型高性能梁支撑膜结构用于局部放电检测。

A Novel High-Performance Beam-Supported Membrane Structure with Enhanced Design Flexibility for Partial Discharge Detection.

作者信息

Fu Chenzhao, Si Wenrong, Li Haoyong, Li Delin, Yuan Peng, Yu Yiting

机构信息

State Grid Shanghai Electric Power Research Institute, Shanghai 200437, China.

Key Laboratory of Micro/Nano Systems for Aerospace (Ministry of Education), Northwestern Polytechnical University, Xi'an 710072, China.

出版信息

Sensors (Basel). 2017 Mar 15;17(3):593. doi: 10.3390/s17030593.

Abstract

A novel beam-supported membrane (BSM) structure for the fiber optic extrinsic Fabry-Perot interferometer (EFPI) sensors showing an enhanced performance and an improved resistance to the temperature change was proposed for detecting partial discharges (PDs). The fundamental frequency, sensitivity, linear range, and flatness of the BSM structure were investigated by employing the finite element simulations. Compared with the intact membrane (IM) structure commonly used by EFPI sensors, BSM structure provides extra geometrical parameters to define the fundamental frequency when the diameter of the whole membrane and its thickness is determined, resulting in an enhanced design flexibility of the sensor structure. According to the simulation results, it is noted that BSM structure not only shows a much higher sensitivity (increased by almost four times for some cases), and a wider working range of fundamental frequency to choose, but also an improved linear range, making the system development much easier. In addition, BSM structure presents a better flatness than its IM counterpart, providing an increased signal-to-noise ratio (SNR). A further improvement of performance is thought to be possible with a step-forward structural optimization. The BSM structure shows a great potential to design the EFPI sensors, as well as others for detecting the acoustic signals.

摘要

本文提出了一种用于光纤外腔法布里-珀罗干涉仪(EFPI)传感器的新型梁支撑膜(BSM)结构,该结构在检测局部放电(PD)时表现出增强的性能和对温度变化的改进抗性。通过有限元模拟研究了BSM结构的基频、灵敏度、线性范围和平坦度。与EFPI传感器常用的完整膜(IM)结构相比,BSM结构在确定整个膜的直径及其厚度时,提供了额外的几何参数来定义基频,从而提高了传感器结构的设计灵活性。根据模拟结果,注意到BSM结构不仅具有更高的灵敏度(某些情况下提高了近四倍),而且有更宽的基频工作范围可供选择,同时线性范围也得到了改善,使系统开发更加容易。此外,BSM结构比其IM对应结构具有更好的平坦度,提供了更高的信噪比(SNR)。通过进一步的结构优化,性能有望得到进一步提升。BSM结构在设计EFPI传感器以及其他用于检测声信号的传感器方面具有巨大潜力。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/bb0b/5375879/616670e7144f/sensors-17-00593-g001.jpg

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