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A distributed reactive power optimization method for multi-area interconnected power grid

机译:多区域互联电网的分布式无功优化方法

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This paper presents a distributed optimization method to solve the optimal reactive power flow (ORPF) problem of multi-area interconnected power grid. An external network reduced equivalent model is used to implement the ORPF calculation of each sub-grid. And the inter-area coupling constraint can be transformed into the injection power modified equation of external boundary bus afterwards. Therefore, the distributed solution of multi-area ORPF problem can be realized through updating of boundary bus equivalent injection power and voltage phasors. The proposed method avoids the tedious process of network equivalence and reduces the dependence on the coordination layer. Furthermore, it accords with the local feature of reactive power optimization and control properly as well. The numerical simulation results of several IEEE cases show that the proposed method is effective and suitable for online application.
机译:本文提出了一种分布式优化方法来解决多区域互联电网的最优无功潮流问题。外部网络简化等效模型用于实现每个子网格的ORPF计算。然后可以将区域间耦合约束转换为外部边界母线的注入功率修正方程。因此,可以通过更新边界母线等效注入功率和电压相量来实现多区域ORPF问题的分布式解决方案。所提出的方法避免了网络等效的繁琐过程,并减少了对协调层的依赖。此外,它也符合无功优化和控制的本地特征。几种IEEE实例的数值仿真结果表明,该方法是有效的,适合在线应用。

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