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首页> 外文期刊>IEE Proceedings. Part B >Failure of the London Underground's 22 kV power supply system: An exercise in logic and transport management
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Failure of the London Underground's 22 kV power supply system: An exercise in logic and transport management

机译:伦敦地铁22 kV电源系统的故障:逻辑和传输管理练习

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摘要

The power supply to the north-east sector of London Underground Ltd's Central Line, and therefore the train service, was out of service for the majority of the time between the 24th and the 29th November 1993. During this period the power system faults were investigated, identified and corrected. This incident was the most extensive power fault on London Underground's power supply system in its recent history. The key cause was identified as an earth fault on a neutral cable of an alternator, which was located several kilometres from the part of the network that became inoperative. London Underground's power 22 kV generation and distribution system is described, and the feed arrangements historically made to minimise the possibility of such an extensive outage are explained. The events leading to the loss of supply. Subsequent identification and correction of the underlying main fault are described, and a model of the 150 Hz harmonic earth-return current. Which was the immediate cause of tripping owing to a series resonant circuit condition, is included. The effect of the neutral cable fault was to increase the 150 Hz current to the point where it caused simultaneous multiple feeder breaker trips from earth-fault relays for the feeders supplying the northeast sector of the Central Line, resulting in loss of power to that sector. A comparison is made between the model and practically measured results.
机译:在1993年11月24日至29日之间的大部分时间里,伦敦地铁有限公司中线东北部的电力供应因此火车服务中断。在此期间,调查了电力系统故障,确定并纠正。该事件是伦敦地铁最近的电源系统中最广泛的电源故障。关键原因被确定为交流发电机的中性电缆上的接地故障,该发电机的中性电缆位于距离无法工作的网络部分几公里的地方。介绍了伦敦地铁(London Underground)的22 kV发电和配电系统,并说明了过去为尽量减少此类大范围停电的可能性而进行的供电安排。导致供应中断的事件。描述了潜在的主要故障的后续识别和纠正,以及150 Hz谐波接地回路电流的模型。其中包括由于串联谐振电路条件而引起跳闸的直接原因。中性电缆故障的影响是将150 Hz的电流增加到这样的程度:在该点上,接地故障继电器同时引起多个馈线断路器跳闸,为中线东北部供电的支线,导致该部分的功率损失。在模型和实际测量结果之间进行比较。

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