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Immersion and Invariance-based Non-linear Coordinated Control for Generator Excitation and Static Synchronous Compensator of Power Systems

机译:电力系统发电机励磁和静态同步补偿器的基于浸入度和不变性的非线性协调控制

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摘要

In this article, a non-linear coordinated control of generator excitation and a static synchronous compensator is proposed to enhance the transient stability of an electrical power system. The coordinated controller proposed is designed via immersion and invariance methodology. In particular, a non-linear model of the power system and immersion and invariance design method are used to achieve not only power angle stability but also frequency and voltage regulations following a large disturbance (a symmetrical three-phase short-circuit fault) on one transmission line or a small perturbation to mechanical power input to synchronous generators in the system. The controller design is validated using a simulation study on a single-machine infinite bus. Simulation results show that the proposed controller can not only keep the system transiently stable but also simultaneously achieve power angle stability and frequency and voltage regulation.
机译:在本文中,提出了一种发电机励磁和静态同步补偿器的非线性协调控制,以提高电力系统的暂态稳定性。提出的协调控制器是通过沉浸和不变性方法设计的。特别是,电力系统的非线性模型以及浸入式和不变性设计方法不仅用于获得功率角的稳定性,而且还可以实现在一个大扰动(对称的三相短路故障)后的频率和电压调节。传输线或对系统中同步发电机输入的机械功率的微小扰动。通过在单机无限总线上进行的仿真研究验证了控制器的设计。仿真结果表明,所提出的控制器不仅可以保持系统瞬态稳定,而且可以同时实现功率角的稳定和频率,电压的调节。

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