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Excitation control for multimachine power systems

机译:多机动力系统的励磁控制

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The control of power systems on the basis of energy analysis offers many advantages. An essential condition to achieve this control is the measurement of the angles of the major generator groups, which are available using satellite Global Positioning Systems. This paper develop two strategies based on energy function higher order derivatives to design nonlinear excitation controllers for multimachine power systems taking into consideration field flux decay effects. The design is based on maximum reduction of energy and can be successfully implemented with as many controllers as major modes, when few controllers are available control on the basis of energy function higher order derivatives produce good results. The first strategy is based on energy function higher order derivatives design where one controller is required to control one mode of oscillation. The second strategy capable of suppressing the oscillation modes with only one controller is based on a linear optimal control design where a linear quadratic regulator (LQR) control component added to energy function higher order derivatives design.
机译:基于能量分析的电力系统控制具有许多优点。实现此控制的必要条件是测量主要发电机组的角度,这些角度可通过卫星全球定位系统获得。本文提出了两种基于能量函数高阶导数的策略,以在考虑磁场通量衰减效应的情况下,为多机电力系统设计非线性励磁控制器。该设计基于最大程度地减少能源,并且可以在与主要模式一样多的控制器上成功实现,而在基于能量函数的可用控制器很少的情况下,高阶导数会产生良好的效果。第一种策略基于能量函数高阶导数设计,其中需要一个控制器来控制一种振荡模式。仅用一个控制器就能抑制振荡模式的第二种策略是基于线性最佳控制设计,其中将线性二次调节器(LQR)控制组件添加到能量函数高阶导数设计中。

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