发电机流量控制策略对电力系统模型长期动态的影响

R. Fitzmaurice, A. Keane, M. O’Malley
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引用次数: 1

摘要

级联组件故障可能导致电力系统的全系统停电。长期动态的复杂系统分析表明,输电系统在一个临界点附近运行。本文研究了发电机运行对电力系统模型的影响。比较了两种相反的发电机调度方法。这两种方法是最小化和最大化线流相对于其在整个系统中的限制。这些方法也被比作经济调度。结果表明,发电机调度方式会影响停电的频率分布和其他统计数据。调度使用的最大化方法导致减少了所有停电的频率,通过负荷的减少量来衡量。这种减少与对输电系统投资的增加同时发生。这些观察结果表明,经济调度在试图提高可靠性的同时,实际上降低了系统的鲁棒性。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Effect of Generator Flow Control Strategies on the Long Term Dynamics of a Model for Power Systems
Cascading component failure can cause system-wide blackouts in power systems. Complex system analysis of the long term dynamics suggests that power transmission systems operate near a critical point. Here the effect of generator operation in a model for power systems is investigated. Two opposing methods of dispatching generators are compared. These two methods are to minimize and maximize the line flows with respect to their limits across the system. These methods are also compared to an economic dispatch. It is shown that the generator dispatch method used affects the frequency distributions and other statistics of blackouts. Dispatching using the maximization method causes a reduction in the frequencies of all blackouts as measured by the amount of load shed. This reduction is concurrent with an increase in the investment in the transmission system. These observations suggest that economic dispatch, while attempting to increase reliability, actually decreases the robustness of the system.
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