Research on Coordinated Control and Hierarchical Partition Control Strategy of Distributed Generation in New Power System

Zhihao An, Shaoshuai Lv, Ning Yin, Zongli Wang
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Abstract

In recent years, the structure of urban power systems has become more complex and the power flow is more changeable, which seriously hinders the optimal scheduling of urban power systems. Therefore, it is necessary to realize the coordinated control of distributed generation, flexible load, and reactive power equipment globally and locally, improve the utilization rate of distributed generation, give full play to the source and load of electric vehicles and energy storage devices, and realize the optimal scheduling of urban power system. This paper proposes a multi-time scale distributed power coordinated control and hierarchical partition control model, which realizes the coordinated optimal control of the new power system for distributed power, load, and energy storage. The effectiveness of the model in this paper is verified by IEEE33 node simulation.
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新电力系统中分布式发电的协调控制与分层分区控制策略研究
近年来,城市电力系统结构日趋复杂,电力流更加多变,严重阻碍了城市电力系统的优化调度。因此,有必要实现分布式发电、柔性负荷、无功设备的全局和局部协调控制,提高分布式发电的利用率,充分发挥电动汽车和储能设备的源、荷作用,实现城市电力系统的优化调度。本文提出了多时间尺度分布式电源协调控制和分层分区控制模型,实现了新型电力系统对分布式电源、负荷、储能的协调优化控制。通过 IEEE33 节点仿真验证了本文模型的有效性。
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