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Static Var compensator control for power systems with nonlinear loads

机译:具有非线性负载的电力系统的静态无功补偿器控制

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摘要

An accurate linearisation technique for multi-input power systems with nonlinear loads is presented. The nonlinear differential algebraic system (NDAS) considered is not in the state equation form. The definitions of M derivative and M bracket are similar to the definitions in classic differential geometric theory and some related revised results are introduced. M derivative and M bracket are used to obtain the feedback control law for the NDAS. The approach is used to design a nonlinear static VAr compensator (SVC) controller for a single-machine infinite system with nonlinear loads. The simulation results show that the nonlinear SVC controller improves damping and the voltage level to a greater extent than conventional controllers. The control law is even effective when the nonlinear loads are varied.
机译:提出了一种具有非线性负载的多输入电力系统的精确线性化技术。所考虑的非线性微分代数系统(NDAS)不在状态方程形式中。 M导数和M括号的定义与经典微分几何理论中的定义相似,并介绍了一些相关的修订结果。 M导数和M括号用于获得NDAS的反馈控制律。该方法用于设计具有非线性负载的单机无限系统的非线性静态VAr补偿器(SVC)控制器。仿真结果表明,与传统控制器相比,非线性SVC控制器在更大程度上改善了阻尼和电压水平。当非线性负载变化时,控制律甚至有效。

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