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Directional Sensitivity of a MEMS-Based Fiber-Optic Extrinsic Fabry–Perot Ultrasonic Sensor for Partial Discharge Detection

机译:基于MEMS的光纤外在法布里 - 珀罗超声波传感器进行局部放电检测的方向灵敏度

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摘要

Extrinsic Fabry–Perot (FP) interferometric sensors are being intensively applied for partial discharge (PD) detection and localization. Previous research work has mainly focused on novel structures and materials to improve the sensitivity and linear response of these sensors. However, the directional response behavior of an FP ultrasonic sensor is also of particular importance in localizing the PD source, which is rarely considered. Here, the directional sensitivity of a microelectromechanical system (MEMS)-based FP ultrasonic sensor with a 5-μm-thick micromechanical vibrating diaphragm is experimentally investigated. Ultrasonic signals from a discharge source with varying incident angles and linear distances are measured and analyzed. The results show that the sensor has a 5.90 dB amplitude fluctuation over a ±60° incident range and an exciting capability to detect weak PD signals from 3 m away due to its high signal–noise ratio. The findings are expected to optimize the configuration of a sensor array and accurately localize the PD source.
机译:外部法布里 - 珀罗(FP)干涉式传感器被强烈地应用于局部放电(PD)检测和定位。以前的研究工作主要集中在新颖的结构和材料上,以提高这些传感器的灵敏度和线性响应。然而,FP超声波传感器的定向响应行为在本地化PD源时也特别重要,这很少考虑。这里,通过实验研究了基于具有5μm厚的微机械振动隔膜的微机电系统(MEMS)的定向灵敏度。测量和分析来自具有变化的入射角和线性距离的放电源的超声信号。结果表明,由于其高信噪比,传感器在±60°入射范围内具有5.90dB的幅度波动,并在±60°的入射范围内和激励能力从3米处检测弱PD信号。预计该研究结果将优化传感器阵列的配置,并准确地本地化PD源。

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