On Stability of Automatic Generation Control

J. Simpson-Porco, N. Monshizadeh
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Abstract

Automatic generation control (AGC) is one of the oldest and most important feedback control systems in large-scale interconnected power grids, yet no general and rigorous closed-loop stability analysis is readily available in the literature. We show in this talk how control-theoretic tools can be leveraged to perform a rigorous nonlinear dynamic stability analysis of classical AGC implemented on a reasonably generic nonlinear power system. The analysis combines several technical tools, including singular perturbation theory, composite Lyapunov functions, and novel results on diagonal stability of matrices with a rank-1 structure. We conclude by commenting on the implications of the analysis for quantitatively assessing the dynamic performance of AGC.
自动发电控制的稳定性研究
自动发电控制(AGC)是大型互联电网中最古老、最重要的反馈控制系统之一,但目前文献中还没有全面、严格的闭环稳定性分析。在这次演讲中,我们展示了如何利用控制理论工具对在相当一般的非线性电力系统上实现的经典AGC进行严格的非线性动态稳定性分析。该分析结合了几种技术工具,包括奇异摄动理论,复合Lyapunov函数,以及具有秩-1结构的矩阵对角稳定性的新结果。最后,我们评论了该分析对定量评估AGC动态性能的意义。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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