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Robust H 2-PSS design based on LQG control optimized by genetic algorithms

机译:基于遗传算法优化的LQG控制的鲁棒H <下标> 2 -PS设计

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AbstractThis paper proposes a genetic algorithms (GA) optimization technique applied to power system stabilizer (PSS) for adapt a robust H2control based on linear quadratic controller (LQ) and Kalman Filter applied on automatic excitation control of powerful synchronous generators, to improve stability and robustness of power system type single machine connected to an infinite bus system (SMIB). Adaptation technique proposed of the robust H2control with the various electrical and mechanical parametric variations based on the optimization of the PSS parameters. The genetic algorithms is a search technique based on the mechanisms of natural selection of a genetic and evolution. This optimization technique is more used in the field of control for solve optimal choice problem of regulators parameters. The integration of GA to robust H2control with robustness test (electrical and mechanical parameters variations of the synchronous machine) show considerable improvements in dynamics performances, robustness stability and good adaptation of the robust H2-PSS parameters under uncertain constraints. This present study was performed using our realized Graphical User Interface (GUI) developed under MATLAB.]]>
机译:<![cdata [<标题>抽象 ara>本文提出了一种遗传算法(GA)优化技术,适用于适应鲁棒H <下标> 2 控制的电力系统稳定器(PSS)在强大的同步发电机自动激励控制上采用线性二次控制器(LQ)和卡尔曼滤波器,提高电力系统型单机连接到无限总线系统(SMIB)的稳定性和稳健性。基于PSS参数的优化,具有各种电气和机械参数变化的鲁棒H <下标> 2 控制的自适应技术。基于遗传和演化的自然选择机制,遗传算法是一种搜索技术。该优化技术更像是求解调节器参数的最佳选择问题的控制领域。 GA对鲁棒H <下标> 2的集成具有鲁棒性测试的(同步机的电气和机械参数变化)显示了动态性能,鲁棒性稳定性和鲁棒H <下标> 2的良好适应性的相当大的改进 -psss在不确定约束下的参数。使用我们在Matlab下开发的实现图形用户界面(GUI)进行了本研究。]]>

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