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Islanded operation and system restoration with converter interfaced distributed generation

机译:转换器接口分布式发电的孤岛运行和系统恢复

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The current practice of distributed generation disconnection for every fault in a distribution network drastically reduces the reliability when the penetration level of distributed generators (DGs) is high. Fault isolation, islanded operation, arc extinction and system restoration after a fault are the major protection barriers which will prevent DGs from maintaining connection during a fault. In this paper, a protection scheme and an intelligent control strategy for converter interfaced DGs are proposed for a distribution network containing higher DG penetration level. The proposals can be used to maximize the DG benefits by maintaining as many DG connections as possible either in grid connected or islanded mode. The protection scheme is proposed using overcurrent relays with the aid of communication to isolate the faults in the network. The intelligent control strategy for a converter interfaced DG will enable fault detection of relays, self extinction of arc faults and automatic restoration of the network after a fault. These proposed strategies will prevent immediate DG disconnections from the network. The results are validated using MATLAB calculations and PSCAD simulations.
机译:当分布式发电机(DGs)的普及水平很高时,针对配电网络中每个故障的分布式发电断开连接的当前做法会大大降低可靠性。故障隔离,孤岛运行,灭弧和故障后的系统恢复是主要的保护屏障,它们将阻止DG在故障期间保持连接。本文针对含较高DG渗透水平的配电网,提出了变流器接口DG的保护方案和智能控制策略。通过以电网连接或孤岛模式维护尽可能多的DG连接,可以将这些建议用于最大化D​​G的利益。提出了一种保护方案,该方案使用过电流继电器并借助通信来隔离网络中的故障。带有转换器接口的DG的智能控制策略将使继电器能够进行故障检测,电弧故障的自熄以及故障后网络的自动恢复。这些提议的策略将防止DG立即从网络断开。使用MATLAB计算和PSCAD仿真对结果进行验证。

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