提高配电网动态电压稳定性的分布式多智能体方案

M. Rahman, M. A. Mahmud, H. Pota, M. J. Hossain, A. Oo
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引用次数: 4

摘要

提出了一种基于分布式多智能体的可再生能源无功管理方案。针对配电系统主要由电压控制的稳定性问题,提出了多智能体系统框架,该框架中的智能体利用在线信息和能量流相互协调。在本文中,智能体主要完成两项任务:无功估计和必要的控制动作。利用配电网的拓扑来估计维持电压稳定所需的无功功率,并利用分布式静态同步补偿器(DSTATCOMs)提供无功功率。DSTATCOM通过在代理框架内使用线性二次型调节器(LQR)控制器进行控制。并将该方案与传统方法进行了比较,验证了仿真结果。
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Distributed multi-agent scheme to improve dynamic voltage stability of distribution networks
In this paper, a distributed multi-agent scheme is presented for reactive power management with renewable energy sources (RESs). The multi-agent system (MAS) framework is developed for distribution systems to improve the stability which is mostly dominated by voltage and the agents in this framework coordinate among themselves using online information and energy flow. In this paper, the agents basically perform two tasks- reactive power estimation and necessary control actions. The topology of distribution network is used to estimate the required reactive power for maintaining voltage stability where distributed static synchronous compensators(DSTATCOMs) are used to supply this reactive power. The DSTATCOM is controlled by using a linear quadratic regulator (LQR) controller within the agent framework. The proposed scheme is further compared with the conventional approach to validate the simulation results.
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