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首页> 外文期刊>Electric Power Applications, IET >Optimal design and analysis of a variable reactor fault current limiter
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Optimal design and analysis of a variable reactor fault current limiter

机译:可变电抗器故障限流器的优化设计与分析

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摘要

Development of power networks increases short circuit level and makes use of fault current limiters (FCLs) inevitably. FCLs should have low impedance in the normal condition of the network and high impedance quickly after the short circuit. For this purpose, a variable reactor has been proposed. In this scheme, the reactor impedance is dependent on the reactor air gap. In the normal condition, the reactor has a large air gap and has low impedance. When a fault occurs and the current increases immediately, a strong force is produced between the fixed and moving parts of the reactor and the air gap is decreased. This leads automatically to an increase in the reactor impedance. After the fault is cleaned, the reactor returns to its previous state by a spring and is recovered easily. An optimal design has been performed here to reach the FCL with desirable performance. To this end, analytical relations of the reactor are implemented and the optimum values are calculated by using genetic algorithm. The designed reactor has been simulated by the finite-element method to verify the analytical calculations. The results confirm the proposed scheme and indicate that the reactor limits the fault current very well.
机译:电力网络的发展会增加短路水平,并不可避免地使用故障电流限制器(FCL)。 FCL在网络的正常情况下应具有低阻抗,而在短路后应迅速具有高阻抗。为此,提出了一种可变电抗器。在该方案中,反应堆阻抗取决于反应堆气隙。正常情况下,电抗器气隙大,阻抗低。当发生故障并且电流立即增加时,电抗器的固定部分和移动部分之间会产生强大的力,并且气隙会减小。这自动导致电抗器阻抗增加。清除故障后,电抗器会通过弹簧恢复到之前的状态,并易于恢复。此处已进行了最佳设计,以达到具有理想性能的FCL。为此,实现了反应器的解析关系,并使用遗传算法计算了最佳值。设计的反应堆已通过有限元方法进行了仿真,以验证分析计算结果。结果证实了所提出的方案,并表明电抗器很好地限制了故障电流。

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