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Fiber-Optic Acoustic Sensors for Partial Discharge Detection in Power Cables

机译:光纤声传感器,用于电力电缆中的局部放电检测

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Partial discharge acoustic detection is a powerful technique for assessment of the insulation integrity of power cables. In contrast to conventional method in which piezoelectric transducers are commonly used to detect the partial discharge acoustic emission, fiber-optic sensors recently become excellent candidates for partial discharge acoustic detection because of their several benefits, such as immunity to electromagnetic interference and long range remote sensing capabilities. In this paper, we demonstrate a fiber-optic sensor system that can successfully detect the partial discharge acoustic emission from power cable joint defect. We first designed a fiber sensor coil that worked as the acoustic sensing element, and built an interrogation unit based on Sagnac interferometry to extract the detected acoustic signal from the fiber sensor coil. Then, a power cable joint defected by stress cone dislocation was used as the model to test the efficiency of our designed fiber-optic sensor system. An electric detection unit that conformed to the IEC 60270 was also used as a reference to monitor the partial discharge electric signals. The statistical analysis on the phase resolved pulses detected by the fiber-optic sensors and the ones detected by the electric sensors verify that the fiber-optic sensors can successfully detect the partial discharges induced within the stress cone dislocation of the power cable joint. We expect that fiber-optic sensors to become an excellent candidate for on-site partial discharge acoustic detection in the future.
机译:局部放电声学检测是一种用于评估电力电缆绝缘完整性的强大技术。与通常使用压电换能器检测局部放电声发射的常规方法相比,光纤传感器由于具有多种优势(例如抗电磁干扰和远程遥感),最近成为了局部放电声检测的极佳候选者。能力。在本文中,我们演示了一种光纤传感器系统,该系统可以成功检测出电力电缆接头缺陷产生的局部放电声发射。我们首先设计了一个用作声音感应元件的光纤传感器线圈,然后基于Sagnac干涉测量法构建了一个查询单元,以从光纤传感器线圈中提取检测到的声音信号。然后,将应力锥错位缺陷的电力电缆接头用作模型,以测试我们设计的光纤传感器系统的效率。符合IEC 60270的电气检测单元也用作监视局部放电电信号的参考。对由光纤传感器检测到的相位分辨脉冲和由电传感器检测到的相位分辨脉冲的统计分析证明,光纤传感器可以成功地检测出在电缆接头的应力锥错位内引起的局部放电。我们希望光纤传感器将来成为现场局部放电声学检测的理想选择。

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