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An Optimization Approach for the Wide-Area Damping Control Design

机译:广域阻尼控制设计的一种优化方法

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Wide-Area Damping Controllers (WADCs) or Centralized damping controllers of electromechanical oscillations based on synchronized phasor measurements can have many input-output channels for its operation. However, cyber attacks such as denial-of-service may damage the information package sent to the control center and compromise the performance of the centralized controller. This paper presents a procedure based on Particle Swarm Optimization for the centralized control design minimizing the number of input-output signals and maximizing the closed loop power system damping. With a reduced number of communication channels, the control center can focus its security system on a few channels. Time delay models are incorporated in the design stage using the second-order Pade approximation. To evaluate the efficacy of the proposed procedure and the resulting controller, modal analysis and time-domain nonlinear simulations were carried out in the IEEE 39-bus power system considering multiple operating conditions.
机译:基于同步相量测量的机电振荡的广域阻尼控制器(WADC)或集中式阻尼控制器可以具有许多输入/输出通道来进行操作。但是,诸如拒绝服务之类的网络攻击可能会损坏发送到控制中心的信息包,并损害集中控制器的性能。本文提出了一种基于粒子群优化的程序,用于集中控制设计,以最小化输入输出信号的数量并最大化闭环电力系统的阻尼。通过减少数量的通信通道,控制中心可以将其安全系统集中在几个通道上。在设计阶段,使用二阶Pade逼近法将时延模型并入。为了评估所提出的程序和所得到的控制器的有效性,在考虑多种工作条件的IEEE 39总线电源系统中进行了模态分析和时域非线性仿真。

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