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Service Restoration Method Considering Simultaneous Disconnection Of Distributed Generators By One-bank Fault Of Distribution System

机译:考虑配电系统单排故障同时断开分布式发电机的服务恢复方法

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摘要

Distributed generators (DGs) such as fuel cells and solar cells are going to be installed in the demand side of distribution systems. The DGs can reduce distribution loss by appropriate allocation. However, there are several problems installing DGs such as service restoration of distribution system with DGs and so on. When one bank fault of distribution substation occurs in distribution system, since DGs are simultaneously disconnected from the system, it is not easy to restore isolated load by one bank switching in distribution substation. Therefore, a service restoration method to determine restoration configuration and restoration procedures (switching procedure from normal configuration to restoration configuration) taking into account simultaneous disconnection of DGs is needed. In this paper, the authors propose a computation method to determine the optimal restoration configuration and the restoration procedure considering simultaneous disconnection of DGs by one bank fault of distribution system. In the proposed algorithm, after all of the restoration configuration candidates are effectively enumerated under the operational constraints, the optimal configuration to restore the isolated load is selected among enumerated configuration candidates. After determining the optimal restoration configuration, the optimal restoration procedures are obtained by greedy algorithm. Numerical simulations are carried out for a real scale system model with 237 sectionalizing switches (configuration candidates are 2~(237)) and 21 DGs (total output is 5250 kW which is 3% of total load) in order to examine the validity of the proposed algorithm.
机译:燃料电池和太阳能电池等分布式发电机(DG)将安装在配电系统的需求侧。 DG可以通过适当的分配来减少分配损失。但是,安装DG存在一些问题,例如使用DG的配电系统的服务恢复等。当配电系统中发生变电站一排故障时,由于DG同时从系统中断开,因此通过变电站中的一排开关来恢复隔离负载并不容易。因此,需要一种考虑到DG的同时断开来确定恢复配置和恢复过程(从正常配置到恢复配置的切换过程)的服务恢复方法。在本文中,作者提出了一种计算方法,该方法可确定考虑配电网的一排故障同时断开DG的最佳恢复配置和恢复过程。在提出的算法中,在操作约束下有效地列举了所有恢复配置候选之后,从列举的配置候选中选择了用于恢复隔离负载的最佳配置。确定最优的恢复配置后,通过贪婪算法获得最优的恢复过程。为了对具有237个分段开关(配置候选为2〜(237))和21个DG(总输出为5250 kW,占总负载的3%)的真实规模系统模型进行数值模拟,以检验该系统的有效性。提出的算法。

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