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Research on PID parameters optimization of synchronous generator excitation control system

机译:同步发电机励磁控制系统的PID参数优化研究

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Synchronous generator excitation control system is one of the most important parts of power system control. And as PID control is one of the first developed and the most widely used control schemes in excitation system, its parameters tuning problem has been highly concerned. Since MATLAB genetic algorithm toolbox has the characteristics of strong robustness and efficient optimization, this paper first establishes a mathematical model of generator excitation system, and then uses ITSE index of terminal voltage step response curve as the optimization index, computes the fitness function based on SIMULINK platform, and uses MATLAB genetic algorithm toolbox to optimize PID parameters of synchronous generator excitation control system. Applying this method to a power plant's synchronous generator excitation system, results demonstrate that dynamic characteristics are improved greatly.
机译:同步发电机励磁控制系统是电力系统控制中最重要的部分之一。而且,由于PID控制是励磁系统中最先开发和使用最广泛的控制方案之一,因此其参数整定问题一直备受关注。由于MATLAB遗传算法工具箱具有鲁棒性强,优化效率高的特点,本文首先建立了发电机励磁系统的数学模型,然后以端电压阶跃响应曲线的ITSE指标为优化指标,基于SIMULINK计算适应度函数。平台,并使用MATLAB遗传算法工具箱优化同步发电机励磁控制系统的PID参数。将这种方法应用于发电厂的同步发电机励磁系统,结果表明动态特性得到了很大的改善。

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