Active boundary identifying technique for steady-state security distance assessment

Sijie Chen, Qixin Chen, Q. Xia, C. Kang, Ming Jing, Q. Ma
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引用次数: 1

Abstract

Steady-state security operation is of particular concern to power systems. In order to ensure operation security, system operators have to operate the system with moderate security margins to accommodate various unpredicted uncertainties. In this paper, we apply “steady-state security distance” (SSD) to quantitatively assess the scale of system security margins. SSD is defined in steady-state security region (SSR) based on AC power flow model. Solution of SSD could be formulated as a time-consuming nonlinear optimization problem. A novel algorithm based on active boundary identifying technique is proposed to improve computation efficiency. The algorithm firstly solves SSD based on simplified DC power flow model and identifies active SSR boundaries. Secondly, complete SSD calculation based on AC power flow model is carried out towards only the active boundaries, with DC SSD information as initial estimations. An IEEE-30 bus case is employed to testify the efficiency and effectiveness of the algorithm.
稳态安全距离评估的主动边界识别技术
电力系统的稳态安全运行是一个值得关注的问题。为了保证运行安全,系统操作员必须在适当的安全余量下运行系统,以适应各种不可预测的不确定性。本文采用“稳态安全距离”(SSD)来定量评价系统安全裕度的规模。基于交流潮流模型,对稳态安全区域(SSR)进行了定义。SSD的求解可以表述为一个耗时的非线性优化问题。为了提高计算效率,提出了一种基于主动边界识别技术的新算法。该算法首先基于简化的直流潮流模型求解SSD,识别有源SSR边界;其次,仅对有源边界进行基于交流潮流模型的完整SSD计算,以直流SSD信息作为初始估计;以IEEE-30总线为例验证了该算法的有效性和有效性。
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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