Qader M R, Bollen M H J, Allan R N. Stochastic prediction of voltage sags in a large transmission system[J]. IEEE Trans. on Industry Applications, 1999, 35(1): 152-162. .
[2]
Bahadoorsingh S, Milanovic J V, Zhang Y, et al. Minimization of voltage sag costs by optimal reconfiguration of distribution network using genetic algorithms[J]. IEEE Trans. on Power Delivery, 2007, 22(4): 2271-2278.
[3]
Bollen M H J. Fast assessment methods for voltage sags in distribution systems[J]. IEEE Trans. on Industry Applications, 1996, 32(6): 1414-1423.
[4]
Wang J, Chen S, Lie T T. System voltage sag performance estimation[J]. IEEE Trans. on Power Delivery, 2005, 20(2): 1738-1747.
[5]
Martinez J A, Martin-Arnedo J. Voltage sag studies in distribution networks-part II: voltage sag assessm- ent[J]. IEEE Trans. on Power Delivery, 2006, 21(3): 1679-1688.
[6]
Moschakis M N, Hatziargyriou N D. Analytical calculation and stochastic assessment of voltage sags[J]. IEEE Trans. on Power Delivery, 2006, 21(3): 1727-1734.
[7]
Bollen M H J. Method of critical distances for stochastic assessment of voltage sags[J]. IEE Procee- dings: Generation, Transmission and Distribution, 1998, 145(1): 70-76.
[8]
张伯明, 陈寿孙, 严正. 高等电力网络分析[M]. 北京: 清华大学出版社, 2007.
[9]
Heine P, Pohjanheimo P, Lehtonen M, et al. A method for estimating the frequency and cost of voltage sags[J]. IEEE Trans. on Power Systems, 2002, 17(2): 290-296.
[10]
Park C H, Jang G. Stochastic estimation of voltage sags in a large meshed network[J]. IEEE Trans. on Power Delivery, 2007, 22(3): 1655-1664.
[11]
Elisa E J, Araceli H. A method for voltage sag state estimation in power systems[J]. IEEE Trans. on Power Delivery, 2007, 22(4): 2517-2526.
[12]
Martinez J A, MartinArnedo J. Voltage sag studies in distribution networks-part I: system modeling[J]. IEEE Trans. on Power Delivery, 2006, 21(3): 1670-1678.