A New Method to Detect the Inter-Turn Short Circuit Fault of Dry-Type Air-Core Shunt Reactor

Jie Wu, Rongsen Luo, Man Zhang, Yumin Peng, Shi Jing, Qixing Huang
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Abstract

Due to the insulation fails caused by complex factors, such as the manufacture factors, transportation and complicated working environment, inter-turn short circuit fault is one of the frequent failures of shunt reactor, at the early stage of whom, its current is not high enough to trigger the protection equipment. However, the current in the shorted turn is very high, which causes serious copper loss, resulting in high temperature rise. In severe case, it will cause fire accident and explosion. Thus, it’s important to design a sensitive and reliable method to detect the inter-turn short circuit fault at its early stage. In this paper, a method based on the power loss factor (PLF) considering both the activate power and equivalent resistance of reactor, is proposed to detect the inter-turn short circuit fault of an air-core shunt reactor considering the effect of insulation resistance. Taking a BKDCL−20000/35 dry-type air-core shunt reactor as an example, the inter-turn short circuit faults occur at different axial heights and coil layers are investigated. The electrical parameters, including equivalent resistance, equivalent inductance, active power, reactive power etc. are presented and comparison is implemented between the normal condition and failure conditions. The current and active power of the shorted turn is calculated and analyzed, which are used to explain the parameters variation of the reactor when inter-turn short circuit fault occurs. Finally, PLF under various working conditions is computed and presented, which provide an alternative to monitor the inter-turn short circuit fault.
干式空芯并联电抗器匝间短路故障检测新方法
由于制造因素、运输和复杂的工作环境等复杂因素引起的绝缘失效,匝间短路故障是并联电抗器的常见故障之一,在并联电抗器的早期,匝间短路电流不足以触发保护设备。但短匝电流很大,造成铜损严重,导致温升过高。严重时,会引起火灾和爆炸事故。因此,设计一种灵敏、可靠的匝间短路故障早期检测方法显得尤为重要。提出了一种同时考虑电抗器有功功率和等效电阻的基于功率损耗因子(PLF)的方法,在考虑绝缘电阻影响的情况下检测空芯并联电抗器匝间短路故障。以BKDCL−20000/35型干式空芯并联电抗器为例,研究了不同轴向高度和线圈层数下匝间短路故障。给出了等效电阻、等效电感、有功功率、无功功率等电气参数,并对正常工况和故障工况进行了比较。对短路匝电流和有功功率进行了计算和分析,用以解释发生匝间短路故障时电抗器参数的变化。最后,计算并给出了各种工况下的PLF,为匝间短路故障的监测提供了一种替代方法。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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