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A novel simultaneous reconfiguration and capacitor switching method to improve distribution networks operation

机译:一种改善配电网运行的新型同时重配置和电容器切换方法

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Due to the important role that distribution systems play in quality of power delivered to the customers, there has always been a great deal of interest in investigating different methods of efficiency enhancement for these networks. Two of these methods are Feeder Reconfiguration (FR) and Capacitor Allocation (CA); both have been widely employed to reduce losses and improve several other operational characteristics in electrical power distribution systems. As in FR process the topology of the network changes, it is necessary to change some previous settings; for instance: the capacity of capacitor banks in service in each bus, after each reconfiguration process. This is due to the fact that the new topology may require another arrangement of capacitors in service to address an optimized operation of the system. In this paper, a method is proposed in order to perform both FR and CA simultaneously. Among the advantages of this method, we should mention less computational time and more accuracy in finding the optimal solution. To verify the proposed method, simulations are performed on the IEEE 33- bus distribution test system. Furthermore, to investigate the efficiency of the proposed method, four scenarios are defined. And, two operational indices are introduced. The resultant system power losses and the computed indices clearly demonstrate the superiority of the proposed method.
机译:由于配电系统在交付给客户的电能质量中起着重要的作用,因此人们一直对研究这些网络的各种提高效率的方法抱有浓厚的兴趣。这些方法中的两种是馈线重配置(FR)和电容器分配(CA)。两者均已广泛用于减少电力分配系统中的损耗并改善其他几个运行特性。在FR过程中,网络拓扑发生变化,因此有必要更改一些先前的设置。例如:在每个重新配置过程之后,每个总线中服务的电容器组的容量。这是由于以下事实:新拓扑可能需要在使用中布置另一组电容器,以解决系统的优化操作。本文提出了一种同时执行帧中继和帧中继的方法。在此方法的优点中,我们应该在找到最佳解决方案时提及更少的计算时间和更高的准确性。为了验证所提出的方法,在IEEE 33总线分配测试系统上进行了仿真。此外,为了研究所提出方法的效率,定义了四个方案。并且,引入了两个操作指标。由此产生的系统功率损耗和计算出的指标清楚地证明了所提出方法的优越性。

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