Synchronization stability of lossy and uncertain power grids

T. Vu, K. Turitsyn
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引用次数: 16

Abstract

Direct energy methods have been extensively developed for the transient stability analysis and contingency screening of power grids. However, there is no analytical energy functions proposed for power grids with losses, which are normal in practice. This paper applies the recently introduced Lyapunov Functions Family approach to the certification of synchronization stability for lossy power grids. This technique does not rely on the global decreasing of the Lyapunov function as in the direct energy methods, and thus is possible to deal with the lossy power grids. We show that this approach is also applicable to uncertain power grids where the stable equilibrium is unknown due to possible uncertainties in system parameters. We formulate this new control problem and introduce techniques to certify the robust stability of a given initial state with respect to a set of equilibria.
有耗不确定电网的同步稳定性
直接能量法已广泛应用于电网暂态稳定分析和应急筛选。然而,目前还没有针对实际运行中常见的有损耗电网的解析能量函数。本文将最近提出的李雅普诺夫函数族方法应用于有损电网同步稳定性的验证。该方法不像直接能量法那样依赖于李雅普诺夫函数的全局递减,因此可以处理有损耗的电网。结果表明,该方法同样适用于不确定电网,在不确定电网中,由于系统参数可能存在不确定性,导致稳定平衡未知。我们提出了这个新的控制问题,并引入了证明给定初始状态相对于一组平衡点的鲁棒稳定性的技术。
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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