Transmission Congestion Management Via Reactive Power Loss Minimization and Node-Breaker Topology Control

S. Babaeinejadsarookolaee, B. Lesieutre, C. DeMarco
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引用次数: 3

Abstract

A novel topology control algorithm using a reactive power loss function is proposed in this paper as a means to reduce congestion and improve margins in the network. A broad range of network switching actions, including both line switching and bus-bar switching, are implemented using a detailed node-breaker representation of the network. The algorithm uses a particular form of the AC power flow equations that allow for the sparse calculation of reactive power loss sensitivity. The numerical results obtained from the case studies show that the proposed approach efficiently reduces congestion or overload in pre-contingency or post-contingency situations. Thus, the proposed algorithm can be used in real-time operation or as a pre-screening step in remedial action plans (RAP) to determine the proper switching actions to reduce the congestion or overload in the network.
基于无功损耗最小化和节点断路器拓扑控制的输电拥塞管理
本文提出了一种新的基于无功损耗函数的拓扑控制算法,以减少网络拥塞,提高网络裕度。广泛的网络交换操作,包括线路交换和总线交换,都是使用网络的详细节点断路器表示来实现的。该算法采用一种特殊形式的交流潮流方程,允许稀疏计算无功损耗灵敏度。算例结果表明,该方法能有效地降低事故发生前和事故发生后的拥塞或过载。因此,该算法可用于实时运行或作为补救行动计划(RAP)的预筛选步骤,以确定适当的切换动作,以减少网络中的拥塞或过载。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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