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A Fully Distributed Reactive Power Optimization and Control Method for Active Distribution Networks

机译:有源配电网的全分布式无功优化控制方法

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摘要

This paper presents a fully distributed reactive power optimization algorithm that can obtain the global optimum solution of nonconvex problems for distribution networks (DNs) without requiring a central coordinator. Second-order conic relaxation is used to achieve exact convexification. A fully distributed second-order cone programming solver (D-SOCP) is formulated corresponding to the given division of areas based on the alternating direction method of multipliers (ADMM) algorithm, which is greatly simplified by exploiting the structure of active DNs. The problem is solved for each area with very little interchange of boundary information between neighboring areas. D-SOCP is extended by using a varying penalty parameter to improve convergence. A proof of its convergence is also given. The effectiveness of the method is demonstrated via numerical simulations using the IEEE 69-bus, 123-bus DNs, and a real 1066-bus distribution system.
机译:本文提出了一种完全分布式的无功优化算法,该算法无需中央协调器即可获得配电网(DN)非凸问题的全局最优解。二阶圆锥松弛用于实现精确的凸化。基于乘数交替方向法(ADMM)算法,根据给定的区域划分,制定了一个完全分布式的二阶锥规划求解器(D-SOCP),通过利用活动DN的结构大大简化了该求解器。对于每个区域,相邻区域之间的边界信息交换很少,从而解决了该问题。通过使用变化的惩罚参数来扩展D-SOCP以提高收敛性。还给出了其收敛性的证明。通过使用IEEE 69总线,123总线DN和真实的1066总线分配系统的数值模拟,证明了该方法的有效性。

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