2) insulation is a key issue in cryogenic or high-tem'/> Fluorescence Fiber Based Identification of Partial Discharges in Liquid Nitrogen for High-Temperature Superconducting Power Apparatus
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Fluorescence Fiber Based Identification of Partial Discharges in Liquid Nitrogen for High-Temperature Superconducting Power Apparatus

机译:基于荧光纤维的高温超导动力装置液氮中的局部排出鉴定

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摘要

Partial discharge (PD) in liquid nitrogen (LN2) insulation is a key issue in cryogenic or high-temperature superconducting power apparatus. In this letter, we experimentally demonstrate PD identification in LN2 using a fluorescent optical fiber sensor and compare its sensitivity to the conventional ultrahigh frequency (UHF) technique. The Corona inception voltage (CIV) in LN2 is studied under fundamental ac and harmonic ac voltages with different values of total harmonic distortion (THD). It is observed that CIV reduces with the increase in harmonic voltage with higher THD. Phase resolved partial discharge pattern, peak-to-peak voltage, and the energy content due to corona discharges measured by both fluorescence-based and UHF techniques follows the same trend, indicating the viability of the new technique.
机译:液氮中的局部放电(PD)(LN 2 )绝缘是低温超导动力装置的关键问题。在这封信中,我们在实验上展示了LN中的PD鉴定 2 使用荧光光纤传感器并比较其对传统超高频率(UHF)技术的敏感性。 LN中的电晕初始电压(Civ) 2 在基本AC和谐波交流电压下研究,具有不同的谐波失真(THD)的不同值。观察到,CIV随着谐波电压的增加而较高的THD。相位分辨的局部放电模式,峰值到峰值电压和由于荧光的和UHF技术测量的电晕放电引起的能量含量跟随相同的趋势,表明新技术的可行性。

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