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A novel algorithm for fast static security analysis during power grid interaction

机译:电网交互过程中快速静态安全分析的新算法

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A new fast static security analysis algorithm, based on the interval analysis theory and probability theory, is proposed to improve the efficiency and accuracy of security analysis during power network interaction. In this paper, the characteristics of network interaction and uncertainty in the interaction process are illustrated firstly. After that the dimension reduction technique is employed in DC interval load flow calculation to determine the branch power flow efficiently. Then active power related contingency screening index is proposed, based on the DC interval analysis and the probability theory, which facilitates the screening of serious contingencies during the interactive process and improves the accuracy of contingency screening. Finally, cumulated and Gram-Charlier series expansion based AC probabilistic power flow is carried out for different operating scenarios during interactive time process. JS 1018-bus example system is introduced to validate the proposed method. Compared with traditional static security analysis, the proposed method can provide more efficient and accurate results for real time system operation.
机译:提出了一种基于区间分析和概率论的快速静态安全分析算法,以提高电网交互过程中安全分析的效率和准确性。本文首先阐述了网络交互的特点和交互过程中的不确定性。之后,在直流间隔潮流计算中采用降维技术来有效地确定支路潮流。然后,基于直流区间分析和概率理论,提出了有功功率相关的应急筛选指标,以利于交互过程中严重突发事件的筛选,提高了应急筛选的准确性。最后,在交互式时间过程中,针对不同的操作方案,执行了基于累积和Gram-Charlier级数展开的交流概率功率流。介绍了JS 1018总线示例系统来验证所提出的方法。与传统的静态安全分析相比,该方法可以为实时系统运行提供更有效,更准确的结果。

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