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Power Systems Stability Enhancement Using a Wide-Area Signals Based Hierarchical Controller

机译:使用基于广域信号的分层控制器提高电力系统的稳定性

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A two-level hierarchical structure is proposed to improve the stability of multimachine power systems. The solution consists of a local controller for each generator at the first level helped by a multivariable central one at the secondary level. The secondary-level controller uses remote signals from all generators to synthesize decoupling control signals that improve the local controllers' performances. The first-level controllers, on the other hand, use only local signals to dampen local oscillations. A systematic procedure for the design of the wide-area signals based central controller is given. It is based on a reformulation of the multimachine power system model into a suitable and closed form. Our control strategy leads to a robust wide-area controller having two major components: a model-based decoupling nonlinear control and an adaptation module. The nonlinear control parameters are updated so that the controller sensitivity to power systems operating point and structure variation is considerably reduced. The hierarchical structure is used on a large power system and simulation results reveal that the system stability is considerably improved: a power system, unstable under conventional controllers (AVR-PSS/GOVERNOR), is rendered stable when combining the central and local controllers' actions.
机译:为了提高多机电源系统的稳定性,提出了一种两级分层结构。该解决方案由第一级的每个发电机的本地控制器组成,第二级的是多变量中央控制器。二级控制器使用来自所有发生器的远程信号来合成去耦控制信号,从而改善本地控制器的性能。另一方面,第一级控制器仅使用本地信号来抑制本地振荡。给出了基于广域信号的中央控制器设计的系统程序。它基于将多机电源系统模型重新构建为合适且封闭的形式。我们的控制策略使鲁棒的广域控制器具有两个主要组件:基于模型的解耦非线性控制和自适应模块。更新了非线性控制参数,从而大大降低了控制器对电力系统工作点和结构变化的敏感性。分层结构用于大型电力系统,仿真结果表明,系统稳定性得到了显着改善:在常规控制器(AVR-PSS / GOVERNOR)下不稳定的电力系统在组合中央控制器和本地控制器的动作时可以保持稳定。

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