On the use of simplified reactive power flow equations for purposes of fast reliability assessment

M. Giuntoli, P. Pelacchi, D. Poli
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引用次数: 13

Abstract

In the present paper, a new method, derived from the linearization of the reactive power flow equations, is presented and discussed. The proposed technique is able to quickly calculate voltages at load busses, as well as reactive power injections at generation busses, using the results of a preliminary ordinary DC load flow. Due to the extremely reduced computational time, this technique can be successfully used for fast reliability assessments, when a huge number of load flow scenarios, generated by a probabilistic approach like Monte Carlo techniques, must be analyzed in terms of voltage violations; the algorithm is also promising for Optimal Reactive Power Flow procedures. Two case studies, based on the IEEE RTS-96 and Poland transmission and sub-transmission network, confirm a speed-up of more than 6 times respect to the Newton-Raphson algorithm, while keeping the mean squared error of voltages within 0.5% and the maximum voltage error below 1.5% of the voltage limits.
简化无功潮流方程用于快速可靠性评估的研究
本文从无功潮流方程的线性化出发,提出并讨论了一种新的无功潮流求解方法。所提出的技术能够快速计算负载母线上的电压,以及发电母线上的无功功率注入,使用初步普通直流负载流的结果。由于极大地减少了计算时间,该技术可以成功地用于快速可靠性评估,当大量的负载流场景,由概率方法如蒙特卡罗技术生成,必须分析电压违例;该算法在优化无功潮流过程中也有应用前景。基于IEEE RTS-96和波兰输配电网络的两个案例研究证实,相对于Newton-Raphson算法,该算法的速度提高了6倍以上,同时将电压的均方误差保持在0.5%以内,最大电压误差低于电压限值的1.5%。
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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