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A Distributed Multi-Agent Based Emergency Control Approach Following Catastrophic Disturbances in Interconnected Power Systems

机译:互联电力系统中灾难性扰动的分布式多智能体应急控制方法

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This paper presents a decentralized emergency control approach for preventing voltage instability by controlling the reactive power and voltage of the system. The proposed control algorithm is based on a distributed architecture of intelligent agents to identify the affected region and to activate timely countermeasures to achieve a fast and accurate response. By dividing the network into several areas, the voltage instability problem can be localized and countermeasures can be directed to the most affected area by the authorized local agent. This facilitates quick decision making within the system. To achieve effective voltage and reactive power support, a sensitivity based zone formation is proposed. The Nordic32 74-bus test system has been used for testing the proposed multi-agent emergency control (MAEC). The results from the case studies demonstrate the effectiveness of the proposed MAEC approach.
机译:本文提出了一种分散式应急控制方法,通过控制系统的无功功率和电压来防止电压不稳定。所提出的控制算法基于智能代理的分布式体系结构,以识别受影响的区域并及时激活对策,以实现快速准确的响应。通过将网络划分为多个区域,可以解决电压不稳定性问题,并可以由授权的本地代理针对受影响最大的区域采取对策。这有利于系统内的快速决策。为了获得有效的电压和无功功率支持,提出了基于灵敏度的区域形成方法。 Nordic32 74总线测试系统已用于测试建议的多主体紧急控制(MAEC)。案例研究的结果证明了所提出的MAEC方法的有效性。

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