分布式发电容量对配电网保护系统协调的影响

Javad Sadeh, M. Bashir, E. Kamyab
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引用次数: 34

摘要

传统的配电系统本质上是径向的,其特点是单一电源向下游馈线网络供电。配电系统的保护方案,主要由熔断器和重合闸组成,在某些情况下,继电器,传统上假设系统是径向的。去年,分布式发电机组在配电网中的使用受到了广泛关注。将分布式资源整合到现有网络中带来了几个技术、经济和监管问题。分布式发电机组与配电网的连接也会影响配电网的性能,而这种影响取决于分布式发电机组的数量、位置和规模。配电网中分布式发电机的存在会造成保护系统的失协调。为了克服这个问题,可以根据网络中dg的数量和位置来改变中继设置。在本文中,我们选择了另一种方法,通过确定每个节点DG的容量,使其不发生错协调。本文通过两个实例对该方法进行了说明。在第一种情况下,每个节点只考虑一个DG,但在第二种情况下,在单独的节点中存在两个或更多DG。给出了典型配电网的仿真结果并进行了讨论。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Effect of distributed generation capacity on the coordination of protection system of distribution network
Conventional power distribution system is radial in nature, characterized by a single source feeding a network of downstream feeders. Protection scheme for distribution system, primarily consisting of fuses and reclosures and, in some cases, relays, has traditionally been designed assuming the system to be radial. In last year extra attention applied in use of distributed generator units in distribution networks. The integration of distributed sources into existing networks brings up several technical, economical and regulatory questions. The connection of distributed generators (DG) to distribution networks also influences the performance of the networks and the impact depends on the number, location and size of injected DG. The presence of distributed generators in the distribution network can cause the mis-coordination of the protection system. In order to overcome this problem, one can change the relay setting based on the number and location of DGs in the network. In this paper, another approach is selected in which, the capacity of DG at each node is determined in such a way, that the mis-coordination does not happen. The proposed method is explained in two cases. In the first case, just one DG at each node is considered, but in the second case existence of two or more DGs in separate nodes is taken into account. The simulation result are presented and discussed in a typical distribution network.
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