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Nonlinear co-ordinated control of excitation and governor for hydraulic power plants

机译:水力发电厂励磁与调速器的非线性协调控制

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摘要

A nonlinear decentralised excitation and governor co-ordinated controller design for hydraulic power plants is proposed to enhance power system transient stability. First, the excitation system and hydro-governor system, considering non-elastic water hammer effect, is modelled as a whole. Then, based on differential geometric theory, the original nonlinear system for multi-machines is exactly linearised by appropriate co-ordinate transformation. After that, linear optimisation control is applied such that the final optimised nonlinear excitation and governor co-ordinated control law can be obtained. To demonstrate the efficiency and analyse the co-ordination mechanism of the proposed controller, simulations on an OMIB system and the EPRI-36 system are performed. Comparison with classical excitation and governor control, nonlinear optimal excitation control, nonlinear robust governor control, the suggested decentralised and co-ordinated control can achieve considerably better performance in improving the transient stability of power systems.
机译:为提高电力系统的暂态稳定性,提出了一种用于水力发电厂的非线性分散励磁与调速器协调控制器设计。首先,考虑了非弹性水锤效应,对激励系统和水力调节器系统进行了整体建模。然后,基于微分几何理论,通过适当的坐标变换将原始的多机非线性系统精确线性化。之后,应用线性优化控制,从而获得最终优化的非线性励磁和调速器协调控制律。为了演示该控制器的效率并分析其协调机制,在OMIB系统和EPRI-36系统上进行了仿真。与经典的励磁和调速器控制,非线性最优励磁控制,非线性鲁棒的调速器控制相比,建议的分散和协调控制可以在改善电力系统的暂态稳定性方面取得更好的性能。

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