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

机译:用于电力电缆中的局部放电检测的光纤声学传感器

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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:局部放电声音检测为电力电缆的绝缘完整性评估的强大技术。相对于传统的方法,其中压电换能器通常用于检测局部放电声发射,光纤传感器最近变得优异候选局部放电声学检测,因为它们的几个好处,比如抗电磁干扰和长距离遥感能力。在本文中,我们展示了一个光纤传感器系统,其能够成功地检测从电力电缆接头缺陷局部放电声发射。我们首先设计,即当过声学感测元件的光纤传感器线圈,并且建立了基于萨格纳克干涉,以提取所检测到的从所述光纤传感器线圈的声信号的询问单元。然后,通过应力锥错位缺陷的电力电缆接头被用作模型测试我们的设计的光纤传感器系统的效率。该适形于IEC 60270的电检测单元也被用作参考来监控局部放电的电信号。相位分辨脉冲的统计分析来检测由光纤传感器和由电传感器检测到的那些验证该光纤传感器可以成功地检测电力电缆接头的应力锥错位内引起的局部放电。我们预计,光纤传感器成为在将来的现场局部放电声学检测的优异候选。

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