An adaptive prefilter algorithm for real-time cyclic security analysis

H. Harsan, N. Hadjsaid, P. Pruvot
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引用次数: 0

Abstract

Security analysis is an important task in modern power system control centers. Security considerations must allow for both active power problems (thermal limits) and reactive power problems involving nodal voltages (isolation and stability limits). There is a definite need for new methods capable of ensuring that system security limits will not be exceeded when abnormal conditions arise, applicable in the real time environment. In this paper, a general algorithm for automating cyclic security analysis is discussed. The algorithm developed uses data obtained from previous security analysis and filters out nondangerous contingencies with reduced computation time. The proposed method may be used to improve speed-up of existing contingency algorithms. Tests have been performed, on the French 225-400 kV grid containing 462 nodes and 855 branches. For this system 96 real states were analysed over a 24-hour-period in 15-minute-steps, These states were recorded on 19 January 1994 on the French grid. The tests confirm that our approach is both applicable and accurate.
一种用于实时循环安全分析的自适应预滤波算法
安全分析是现代电力系统控制中心的一项重要工作。安全考虑必须考虑有功功率问题(热极限)和涉及节点电压的无功功率问题(隔离和稳定性极限)。有一个明确的需要,新的方法,能够确保系统安全限制不会超过异常情况出现时,适用于实时环境。本文讨论了一种自动循环安全分析的通用算法。该算法利用以前的安全分析数据,在减少计算时间的同时过滤掉非危险的突发事件。该方法可用于提高现有权变算法的速度。在法国225-400千伏电网上进行了测试,其中包含462个节点和855个分支。为了这个系统,在24小时内以15分钟的步骤分析了96个实际状态,这些状态于1994年1月19日在法国电网上记录下来。实验结果表明,该方法既适用又准确。
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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