具有安全约束的最优反应性规划

W. Thomas, A. Dixon, D. Cheng, R. M. Dunnett, G. Schaff, J. Thorp
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引用次数: 22

摘要

英格兰和威尔士国家电网公司(NGC)开发了一个名为SCORPION的计算机程序,以帮助系统规划者优化输电系统上新无功补偿电站的位置和规模。由于电力流量的增加以及发电站投入使用和退出服务的时间缩短,NGC系统的无功功率需求已经上升。鉴于所涉及的高成本,重要的是在不损害安全的情况下尽可能经济地安装无功补偿。基于迭代使用的传统方法是劳动密集型和主观的。SCORPION确定了近乎最佳的新无功电源模式,以满足输电系统正常和偶然运行状态的电压限制。该算法对系统状态进行顺序处理,而不是同时对所有状态进行优化。这允许考虑大量的电力系统状态与可接受的运行时间和计算机内存需求。已安装的反应源被视为连续变量,而不是离散变量。然而,该程序有一个重启功能,使用户能够明确地添加实际大小的无功源,从而朝着规划问题的可实现解决方案努力。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Optimal reactive planning with security constraints
The National Grid Company (NGC) of England and Wales has developed a computer program, SCORPION, to help system planners optimize the location and size of new reactive compensation plant on the transmission system. The reactive power requirements of the NGC system have risen as a result of increased power flows and the shorter timescale on which power stations are commissioned and withdrawn from service. In view of the high costs involved, it is important that reactive compensation be installed as economically as possible, without compromising security. Traditional methods based on iterative use of a load flow program are labour intensive and subjective. SCORPION determines a near-optimal pattern of new reactive sources which are required to satisfy voltage constraints for normal and contingent states of operation of the transmission system. The algorithm processes the system states sequentially, instead of optimizing all of them simultaneously. This allows a large number of power system states to be considered with an acceptable run time and computer memory requirement. Installed reactive sources are treated as continuous, rather than discrete, variables. However, the program has a restart facility which enables the user to add realistically sized reactive sources explicitly and thereby work towards a realizable solution to the planning problem.
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