自组织临界性及其在电力系统防崩溃中的应用

Y. Qun, Guo Jianbo
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引用次数: 4

摘要

中国的国家电力传输网络正在经历快速变化,并将继续在更接近压力状态的情况下运行,在这种情况下,存在级联停电和停电的重大风险。这些输电系统的重大级联干扰或停电显然会对我们的社会造成严重损害。基于自组织临界状态(SOC)和分形的概念,通过对1981 - 2002年中国电力系统停电的分析,揭示了国内电力系统停电的SOC特征,并构建了全国电网停电的尺度-频率模型。这些统计数据强烈表明,SOC动态可能在电力系统的全球复杂动态中发挥重要作用。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Self-organized Criticality and Its Application in Power System Collapse Prevention
The state electric power transmission networks of china is experiencing rapid changes and will continue to be operated closer to a stressed condition in which there is substantial risk of cascading outages and blackouts. Major cascading disturbances, or blackouts of these transmission systems can obviously cause severe damage to our society. Based on the concept of self-organized criticality (SOC) and fractal and by analyzing power system blackouts in China from 1981 to 2002, the characters of SOC of domestic power system blackouts are revealed, and the scale-frequency models for blackouts occurred in nationwide power grid are constructed. For these statistics, it strongly suggests that SOC dynamics may play an important role in the global complex dynamics of power systems.
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