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A Decentralized Multiagent-Based Voltage Control for Catastrophic Disturbances in a Power System

机译:电力系统中灾难性扰动的基于分散式多智能体的电压控制

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In this paper, a multiagent-based voltage and reactive power control in the case of a multiple contingency is presented. Incorporating the agent-based autonomous feature to the intelligence of the remote terminal units, the present power system control structure can be used to help in preventing system voltage collapse during catastrophic disturbances. The control algorithm is based on a decentralized architecture of intelligent agents and the determination of a local zone that can carry out quick countermeasures in a decentralized manner as a multiagent system (MAS) during an emergency situation. An adaptive determination of the local zones undergoing voltage collapse has been developed based on the electrical distances among the generators and loads. Once assigned, the elements of the Jacobian matrix can be used to determine the optimum actions that need to be carried out at each power system element (such as increasing the voltages of generators and load shedding) within the assigned local zone. The contract net protocol is used for agent interactions. Simulation results using the IEEE-57 bus system show that the proposed method can act quickly to respond to emergency conditions to ensure that voltage collapse can be avoided.
机译:本文提出了在多偶发情况下基于多代理的电压和无功功率控制。将基于代理的自主功能与远程终端设备的智能功能相结合,本电力系统控制结构可用于帮助预防灾难性骚扰期间的系统电压崩溃。该控制算法基于智能代理的分散式体系结构,并确定了可以在紧急情况下作为多代理系统(MAS)以分散方式执行快速对策的本地区域。基于发电机和负载之间的电气距离,已经开发出自适应确定遭受电压崩溃的局部区域的方法。分配后,雅可比矩阵的元素可用于确定需要在分配的局部区域内的每个电力系统元素上执行的最佳操作(例如,增加发电机的电压和减载)。合同网络协议用于代理交互。使用IEEE-57总线系统的仿真结果表明,该方法可以快速响应紧急情况,从而确保可以避免电压崩溃。

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