[1]
Clement Nyns K, Haesen E, Drisen J. The impact of charging plug-in hybrid electric vehicles on a residential distribution grid [J]. IEEE Trans on Power System, 2010, 25(1): 371-380..
DOI: 10.1109/tpwrs.2009.2036481
Google Scholar
[2]
Putrus G A, Suwanapingkaral P,Johnston D,et al. Impact of electric vehicles on power distribution networks[C] // Proceeding of IEEE Vehicle Power and Propulsion Conference, September 7-10, 2009, Dearborn, MI, USA: 827-831
DOI: 10.1109/vppc.2009.5289760
Google Scholar
[3]
Shao S N, Pipattanasomporn M,Rahman S. Challenges of PHEV penetration to the residential distribution network [C] // Proceeding of IEEE Power & Energy Society General Meeting, July 26-30, 2009, Calgary, Canada
DOI: 10.1109/pes.2009.5275806
Google Scholar
[4]
Taylor J, Maitra A, Alexander M, et al. Evaluation of the impact of plug-in electric vehicle loading on distribution system operation [C] // Proceeding of IEEE Power & Energy Society General Meeting, July 26-30, 2009, Calgary, Canada.
DOI: 10.1109/pes.2009.5275317
Google Scholar
[5]
Roe C,Evanelos F,Melsel J, et al. Power system level impacts of PHEVs [C] // Proceeding of the 42nd Hawaii International Conference on System Sciences, January 5-8,2008,Hawaii,HI,USA
DOI: 10.1109/hicss.2009.345
Google Scholar
[6]
Xu Mingyu, Mu Xinghua, Zhang Hui, He Yu, Zhang Mingjiang, Chen Xiaoguang. Analysis of the influence the electrical vehicle charging station to the grid harmonics [J]. Heilongjiang Electric Power, 2012(01).
Google Scholar
[7]
Chang J and Chow J H, in: Time-Optimal Series Capacitor Control for Damping Interarea Modes in Interconnected Power Systems, IEEE Trans on PWRS, 1997, 12(1): 215~221.
DOI: 10.1109/59.574942
Google Scholar
[8]
Ma Ling-ling, Zhang Jie-qiong. Study on Electric Vehicle Charging Device Model Based on PSCAD and Harmonic Analysis [J]. Shanxi Electric Power, 2012, (07): 28-32.
Google Scholar