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Wildfire Trips De-Energized Line Shunt Reactor

机译:野火旅行脱能线路并联反应堆

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Dense smoke from wildfires within a 500-kV line corridor led to several line protection trips over a three-day period. A switchable line-connected reactor, provided to control Ferranti voltages, tripped and locked out twice by its protection shortly after the line was de-energized. Lockout operation prevented quick reactor reinsertion and impeded operational flexibility until visual inspections of the reactor were conducted on both occasions. Forensic investigation of the event concluded that the smoke increased the line capacitances. This created a near 60-Hz zero sequence resonant circuit when the line tripped and became de-energized along with the reactor. The resonant circuit amplified the capacitively coupled zero sequence 60-Hz voltage induced from circuits which run adjacent to the line for a short distance. The voltage amplification drove enough current through the reactor to trip the sensitive ground overcurrent protection. A holistic mitigation is designed to avoid reoccurrence of the incident and improve overall line reliability. The intent of this paper is to share lessons learned from the event investigation with peer utilities because this problem of unexpected operation of line shunt reactor protection has not previously been reported.
机译:500 kV线路走廊内的野火产生的浓烟导致为期三天的几次线路保护跳闸。线路断电后不久,可控制线路电压的可切换式电抗器因其保护功能而跳闸并锁定两次。锁定操作阻止了反应堆的快速重新插入并妨碍了操作的灵活性,直到在两种情况下都对反应堆进行了目视检查之前。对事件的法医调查得出结论,烟雾增加了线路电容。当线路跳闸并与电抗器一起断电时,这会产生接近60 Hz的零序谐振电路。谐振电路放大了从与线路相邻的短距离电路中产生的电容耦合零序60Hz电压。电压放大将足够的电流驱动通过电抗器,以使敏感的接地过电流保护跳闸。整体缓解措施旨在避免事件再次发生并提高总体线路可靠性。本文的目的是与对等公用事业公司分享从事件调查中汲取的经验教训,因为以前没有报道过线路并联电抗器保护的意外操作问题。

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