高灵敏硅凹槽膜片型光纤F-P局部放电超声传感器
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TM835

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国家重点研发计划资助项目(2022YFF0708400)


High sensitivity fiber optic F-P partial discharge ultrasonic sensor based on a grooved silicon diaphragm
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National Key Research and Development Program of China

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    摘要:

    文中设计并制备了一种硅凹槽膜片型光纤法布里-珀罗(Fabry-Perot,F-P)超声传感器,用于电力设备局部放电检测。采用有限元软件优化设计传感膜片的凹槽参数,与传统圆形膜片相比,硅凹槽膜片的静态灵敏度提升4.09倍且谐振频率基本不变。通过耦合效率修正传统双光束干涉模型,研究F-P腔长对传感器干涉光谱对比度的影响,以提升传感器的声压灵敏度。利用微机电系统(micro-electro-mechanical system,MEMS)制备硅凹槽膜片,其凹槽直径为829.44 μm,厚度为2.09 μm,F-P腔长为163.600 μm。在谐振频率61.5 kHz处,传感器声压灵敏度可达357.78 mV/Pa,并结合气体绝缘开关(gas insulated switchgear,GIS)局部放电缺陷模型对传感器性能进行验证。实验结果表明,文中所制备的光纤F-P超声传感器具有声压灵敏度高、实时性好、超声信号检测能力强等优点。

    Abstract:

    A fiber-optic Fabry-Perot (F-P) ultrasonic sensor based on grooved silicon diaphragm for partial discharge (PD) detection in power equipment has been designed and prepared. The parameters of the grooved diaphragm are optimized by finite element simulation. The static sensitivity of grooved diaphragm is 4.09 times higher than that of traditional circular diaphragm,while the resonant frequency is basically the same. The coupling efficiency is introduced to modify the traditional two-beam interference model,and the effect of the F-P cavity length on the contrast of the interference spectrum is studied to improve the acoustic pressure sensitivity of the sensor. A grooved silicon diaphragm with a grooved diameter of 829.44 μm and a thickness of 2.09 μm is prepared by the micro-electro-mechanical system (MEMS). The F-P cavity length of fabricated ultrasonic sensor is 163.600 μm. The acoustic pressure sensitivity of the sensor is up to 357.78 mV/Pa at the resonance frequency of 61.5 kHz,and the sensor performance is verified by combining with the gas insulated switchgear (GIS) partial discharge defect model. The experimental results show that the proposed sensor has the advantages of high sensitivity,good real-time performance, and strong capable of detecting ultrasonic signals.

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张丽娜,黄怿,汪良杰,李群,郝宝欣,王廷云.高灵敏硅凹槽膜片型光纤F-P局部放电超声传感器[J].电力工程技术,2023,42(5):2-9

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  • 收稿日期:2023-08-08
  • 最后修改日期:2023-09-18
  • 录用日期:2023-09-26
  • 在线发布日期: 2023-10-10
  • 出版日期: 2023-09-28
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