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Adapting the FBG Cavity Sensor Structure to Monitor and Diagnose PD in Large Power Transformer

机译:适应FBG腔传感器结构以监视和诊断大型电力变压器中的局部放电

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Fiber optics vibration sensors have been extensively studied over the last ten years they have mainly been used to capture low frequency signals. One of these investigations has been commercialized to measure and trend End Winding Vibration (SEW) inside larger power generators. This sensor consists of a twin grating cavity and can be used to monitor temperature change as well as vibration. This paper will discuss the adaptation of the FBG cavity structure into a broad band sensor capable of measuring a range of higher frequencies previously identified as PD signals in the transformer from 30K to 300 KHz. Other work has been done to explore the possibility of developing a fiber optics acoustic sensor. The incentive is to overcome the limitation of the resonant based, acoustic, piezoelectric PD sensors previously used to analyze and locate PD. Working in resonance, they are unable to reveal the detailed spectrum or the signature of the PD events. We want to improve the packaging material and structure, then optimize the coupling methods to enhance its signal to noise ratio. All our work is still based on the fiber gratings cavity structure.
机译:在过去的十年中,对光纤振动传感器进行了广泛的研究,它们主要用于捕获低频信号。这些研究之一已经商业化,以测量和趋势大型发电机内部的绕组末端振动(SEW)。该传感器由一个双光栅腔组成,可用于监视温度变化和振动。本文将讨论FBG腔结构在宽带传感器中的适应性问题,该传感器能够测量先前在30K至300 KHz变压器中被确定为PD信号的更高频率范围。已经进行了其他工作来探索开发光纤声学传感器的可能性。动机是克服先前用于分析和定位PD的基于共振的声学压电PD传感器的局限性。他们无法共鸣,无法揭示PD事件的详细频谱或特征。我们要改善包装材料和结构,然后优化耦合方法以提高其信噪比。我们所有的工作仍基于光纤光栅腔结构。

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