基于广域信号的分级控制器增强大电力系统稳定性

F. Okou, L. Dessaint, O. Akhrif
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引用次数: 80

摘要

为了提高电力系统在严重突发事件下的稳定性,提出了一种两级分层结构。该解决方案包括在第一级为每个发电机设置一个本地控制器,并在第二级设置一个多变量中心控制器。二级控制器利用来自所有发电机的远程信号合成两个输出,从而使子系统动力学解耦,从而使局部控制器的性能最大化。第一级控制器专门使用本地信号来抑制本地振荡。给出了基于广域信号的控制器的系统设计步骤,该方法是在将多机电力系统模型重新表述为合适的封闭形式的基础上实现的。将该方法应用于实际电力系统,仿真结果表明,该方法大大提高了系统的稳定性。在经典控制器(AVR-PSS/总督)下不稳定的电力系统,当我们将中央控制器和局部控制器的作用结合起来时,可以使其稳定。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Large power system stability enhancement using wide-area signals based hierarchical controller
A two-level hierarchical structure is proposed to improve power systems stability under severe contingencies. The solution consists of a local controller for each generator at the first level helped by a multivariable central one at the secondary level. The secondary level controller uses remote signals from all the generators to synthesize two outputs, which decouple the subsystems dynamics hence maximizing the local controllers' performances. The first level controllers use local signals exclusively to dampen local oscillations. A systematic procedure for the design of the wide-area signals based controller is given and is based on a reformulation of the multimachine power system model into a suitable and closed form. The hierarchical structure is used on a realistic power system and simulation results show that the system stability is considerably improved. A power system, unstable under the classical controllers (AVR-PSS/GOVERNOR), is rendered stable when we combine the central and local controllers' actions.
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