Optimal Service Restoration in Active Distribution Networks Considering Microgrid Formation and Voltage Control Devices

Leonardo H. Macedo, G. Muñoz-Delgado, J. Contreras, R. Romero
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引用次数: 11

Abstract

This paper presents a new mixed-integer linear programming model for the optimal restoration of active distribution networks during permanent fault events considering not only network reconfiguration but also the islanded operation of distributed generation, thereby giving rise to the formation of microgrids. To that end, the proposed approach accounts for both the black-start capacity of generators and the connection of multiple generators to the same microgrid. Moreover, voltage control devices such as on-load tap changers, voltage regulators, and capacitor banks are also considered in the formulation. The model is driven by the maximization of the restored load after single or multiple faults in the network using the minimum number of switching operations and modifications in the statuses of the voltage control devices. The proposed model is implemented in the mathematical modeling language AMPL and solved with the Gurobi solver. Tests are conducted using a 53-node distribution system considering different fault locations. Numerical results show the relevant effect of microgrid formation and voltage control in the restoration process. Simulations also prove the effective performance of the proposed approach in terms of computation time.
考虑微电网形成和电压控制装置的有源配电网最优业务恢复
本文提出了一种新的混合整数线性规划模型,用于永久故障事件下有功配电网的最优恢复,该模型既考虑了电网重构,又考虑了分布式发电的孤岛运行,从而导致微电网的形成。为此,所提出的方法既考虑了发电机的黑启动能力,也考虑了多台发电机与同一微电网的连接。此外,电压控制装置,如有载分接开关,电压调节器,电容器组也在制定中考虑。该模型的驱动是在网络中单个或多个故障后,使用最少的开关操作次数和电压控制设备状态的修改,使恢复的负载最大化。该模型在数学建模语言AMPL中实现,并使用Gurobi求解器进行求解。采用考虑不同故障位置的53节点配电系统进行了测试。数值结果显示了微网形成和电压控制在恢复过程中的相关作用。仿真结果也证明了该方法在计算时间方面的有效性。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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