Multi-Objective Reactive Power Optimization Including Distributed Generation

Hong Wang, Zhijie Wang
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Abstract

 In order to solve the problem of reactive power optimization of distribution network with distributed power supply, the multi-objective reactive power optimization function is established from multiple perspectives, and the equation constraint and inequality constraint equation of power system are considered. Secondly, taking IEEE33 node distribution system with distributed power supply as an example, reactive power optimization of single objective function is carried out to verify that the proposed algorithm has a global convergence and a great advantage in convergence speed. Finally, multi-objective reactive power optimization of distribution network with distributed power supply is carried out. Simulation results demonstrate the effectiveness of the proposed algorithm.
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包含分布式发电的多目标无功优化
为解决分布式供电配电网无功优化问题,从多个角度建立了多目标无功优化函数,并考虑了电力系统的方程约束和不等式约束方程。其次,以分布式供电的IEEE33节点配电系统为例,进行了单目标函数无功优化,验证了所提算法具有全局收敛性,在收敛速度上有较大优势。最后,对分布式供电的配电网进行了多目标无功优化。仿真结果验证了该算法的有效性。
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