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Modeling and analysis of fault current limiter as a short-circuit protection device: A case study at the sengkaling substation, Malang, Indonesia

机译:故障限流器作为短路保护装置的建模与分析:以印度尼西亚玛琅Sengkaling变电站为例

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摘要

The increase of electricity demand requires the improvement of utility service and operating performance of substations and the related equipment. It is to anticipate various possible faults, including short-circuit faults. Air-core reactors, fuses and circuit breakers are among the protection equipment commonly used to handle the short-circuit faults. However, those protection devices are in general only able to respond and to become active in two or three cycles after the faults occurrence. This paper presents a study to examine the use of Fault Current Limiter (FCL) for providing the response in less than two cycle of fault current. The FCL is principally a variable impedance which is connected in series with the circuit breaker to limit the short-circuit current in a substation. The results of study on a distribution system taken as a sample case indicate that the use of FCL provides an active response which could be achieved in the first-half of the disturbance. It could lower the current level as much as 62.44% in case of line to ground fault, 60.70% in case of line to line fault, whereas in case of double line and triple line to ground faults the reduction could reach 61.46% and 61.35%, respectively.
机译:电力需求的增加需要改善公用事业服务以及变电站和相关设备的运行性能。可以预料各种可能的故障,包括短路故障。空芯电抗器,保险丝和断路器是通常用于处理短路故障的保护设备。但是,这些保护设备通常只能在故障发生后的两三个周期内响应并激活。本文提出了一项研究,以研究使用故障电流限制器(FCL)在少于两个故障电流周期内提供响应。 FCL原则上是可变阻抗,它与断路器串联以限制变电站中的短路电流。以配电系统为例的研究结果表明,使用FCL可以提供主动响应,这可以在干扰的上半年实现。线路接地故障时,电流水平可降低多达62.44%;线路接地故障时,电流水平可降低60.70%;而双线和三线接地故障时,电流水平可降低61.46%和61.35% , 分别。

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