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首页> 外文期刊>International review of automatic control >Stabilizing Controller Design for Nonlinear Power System Using Particle Swarm Optimization
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Stabilizing Controller Design for Nonlinear Power System Using Particle Swarm Optimization

机译:使用粒子群优化的非线性电力系统稳定控制器设计

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摘要

Major problem of power system is to maintain transient stability and voltage regulation on inception of a severe fault or large change of load. It is required to maintain both the synchronism and post fault voltage regulation for satisfactory operation. In general the transient stability is improved by increasing the excitation rapidly, by this method either the voltage regulation will be achieved or the transient stability could be improved. To improve both the transient stability and voltage regulation of power system simultaneously a composite controller (excitation and governor control) based on direct feedback linearization (DFL) technique is considered in this paper. It is proposed to compute the controller parameters by particle swarm optimization (PSO) technique, a heuristic optimization method. The complete procedure has been explained by an example of a single machine infinite bus system. By simulation it has been shown that both the transient stability and good voltage regulation is achieved by implementing this controller. For simulation MATLAB 7 software is used.
机译:电力系统的主要问题是保持瞬态稳定性和电压调节,以初始化严重的故障或大量负载变化。需要保持同步和断电后电压调节,以便令人满意的操作。通常,通过快速增加激发,通过该方法增加电压调节或者可以提高瞬态稳定性或者可以提高瞬态稳定性。为了提高电力系统的瞬态稳定性和电压调节,同时基于直接反馈线性化(DFL)技术的复合控制器(激励和调速器控制)进行了考虑。建议通过粒子群优化(PSO)技术,启发式优化方法计算控制器参数。通过单机无限总线系统的示例解释了完整的过程。通过模拟,已经表明通过实现该控制器来实现瞬态稳定性和良好的电压调节。对于模拟MATLAB 7软件使用。

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