基于电网电压静态稳定的潮流不可解调节方法

Feng Hong, Jinfu Chen, Jian Zuo
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引用次数: 2

摘要

潮流不可解问题是调度自动化的基本问题之一,在电网模式规划和最优潮流分析过程中经常出现。针对这一问题,本文提出了一种实用的基于网格弱点的平差方法。该方法采用“低功率注入”方法,计算出在不可解情况下系统最大负荷水平的相似潮流解。根据该方案,利用基于系统局部运行参数和外部等效系统模型的指标找到系统弱点。结合灵敏度分析对发电机的有功功率和无功补偿装置进行重新调度,从而使系统最大负荷水平提高,最终得到系统在原负荷水平下的潮流解。该方法克服了不可解潮流优化算法计算量大的缺点,可应用于大型实际电网。同时,该方法具有明确的物理解释,操作人员可参与其中,具有较大的应用价值。该方法在IEEE14节点系统上进行了测试。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Power flow unsolvable cases adjustment method based on grid static voltage stability
The unsolvable power flow problem is one of the basic issues in dispatching automation, which frequently appears in the process of grid mode planning and Optimal Power Flow (OPF) analysis. To deal with this problem, a practical adjustment method based on grid weak point is proposed in this paper. This method use “lower power injection” method to calculate a similar power flow solution which also the system maximum load level in unsolvable case. According this solution, the system weak point can be found by the index based on local system operation parameters and external equivalent system model. Combined with sensitivity analysis to reschedule the active power of generators and reactive power compensation devices, so as to make the system maximum load level increase, eventually get the system power flow solution at the original load level. This method overcome the large calculation of optimize algorithm in unsolvable power flow problem and can be applied to large practical grid. In the meantime, this method has clear physical interpretation, operator can be involved during the process, have great value in application. The method is tested on IEEE14 nods system.
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