[1]
Ke junQian, Cheng keZhou. Load Model for Prediction of Electric Vehicle Charging Demand[C]. 2010 International Conference on Power System Technology. (in Chinese).
Google Scholar
[2]
The ministry of science and technology of the People's Republic of China. Electric vehicle technology development five-year special planning [Z]. 2012, 03.
Google Scholar
[3]
Beijing public transport group. Brief introduction of Beijing public transport group[EB/OL]. http: /www. bjbus. com/home/view_content.
Google Scholar
[4]
State Electricity Regulatory Commission. Electricity regulation 2011 annual report[R]. 2011, 06(in Chinese).
Google Scholar
[5]
Xu Lizhong, Yang Yaguang, Xu Zhao, et al. Impacts of electric vehicle charging on distribution networks in Denmark [J]. Automation of Electric Power Systems, 2011, 35(14): 18-23(in Chinese).
Google Scholar
[6]
Tian Liting, Zhang Mingxia, Wang Huanling. Evaluation and Solutions for Electric Vehicles'Impact on the Grid [J]. Proceedings of the CSEE, 2012(31): 43-47(in Chinese).
Google Scholar
[7]
Gao Ciwei, Zhang Liang. A Survey of Influence of Electrics Vehicle Charging on Power Grid [J]. Power System Technology, 2011(02): 128-130(in Chinese).
Google Scholar
[8]
Rautiainen A, Repo S, Jarventausta P, et al. Statistical charging load modeling of PHEVs in electricitydistribution networks using National Travel Survey data[J]. IEEE Transactions on Smart Grid, 2012, PP(99): 1-10.
DOI: 10.1109/tsg.2012.2206411
Google Scholar
[9]
LuoZhuowei, Hu Zechun, Song Yonghua, et al. Study on plug-in electric vehicle charging load calculating[J]. Automation of Electric Power Systems, 2011, 35(14): 36-41(in Chinese).
Google Scholar
[10]
Acha S, Koen H, VAN Dam K H, et al. Integratedmodeling of agent-based electric vehicles into optimalpower flow studies[C]/21st International Conference on Electricity Distribution. Frankfurt, Germany: CIRED, 2011: 1-4.
Google Scholar
[11]
Shahidinejad, Soheil. Profile of Charging Load on the Grid Due toPlug-in Vehicles[J]. IEEE Transactions on Smart Grid, 2012, PP(03), 135 - 141.
DOI: 10.1109/tsg.2011.2165227
Google Scholar
[12]
J. Taylor, A. Maitra, M. Alexander, D. Brooks, M. Duvall. Evaluation of the Impact of Plug-in Electric Vehicle Loading on Distribution System Operations[C]/Proceedings of IEEE Power&Engineering Society General Meeting, July 26-30, 2009, Calgary, Canada: 1-6.
DOI: 10.1109/pes.2009.5275317
Google Scholar
[13]
Taylor J, Maitra A, Alexander M. Evaluation of the impact of plug-in electric vehicle loading on distribution systemoperations[C]/IEEE Power&Energy Society General Meeting. Calgary, Canada: IEEE PES, 2009: 1-6.
DOI: 10.1109/pes.2009.5275317
Google Scholar
[14]
Rautiainen A, Repo S, Jarventausta P, et al. Statistical charging load modeling of PHEVs in electricitydistribution networks using National Travel Survey data[J]. IEEE Transactions on Smart Grid, 2012, PP(99): 1-10.
DOI: 10.1109/tsg.2012.2206411
Google Scholar
[15]
Gonder J, Markel T, Simpson A, et al. Using GPS travel data to assess the real world driving energy use of plug-inhybrid electric vehicles[C]/Transportation Research Board 86th Annual Meeting. Washington D.C., USA: TRB, 2007: 1-11.
DOI: 10.3141/2017-04
Google Scholar
[16]
Jemal Y K. Plug-in electric vehicle charging impacts on power systems[D]. Giteborg: Chalmers University of Technology, (2010).
Google Scholar
[17]
TianLiting, Shi Shuanglong, JiaZhuo. A statistical model for charging power demand of electric vehicles[J]. Power System Technology, 2010, 34(11): 126-130(in Chinese).
Google Scholar
[18]
Geske M, Stitzer M. Modeling and simulation of electric car penetration in the distribution power system–case study[C]/Modern Electric Power Systems 2010, Proceedings of the International Symposium. Wroclaw, Poland: MEPS, 2011: 1-6.
Google Scholar
[19]
Staats P T, Grady W M, Arapostathis A, et al. A statistical method for predicting the net harmonic currents generatedby a concentration of electric vehicle battery chargers[J]. IEEE Transactions on Power Delivery, 1997, 12(3): 1258-1266.
DOI: 10.1109/61.637002
Google Scholar
[20]
Sundstrom O, Binding C. Optimization methods to plan the charging of electric vehicle fleets[C]/International Conference on Control, Communication and Power Engineering. Chennai, India: ACEEE, 2010: 1-6.
Google Scholar
[21]
Li Xiangzhe, Su Fang, Lin Daoyong. Electric vehicle power supply system[M]. BeijingChemicalIndustrypress, 2011, 11(in Chinese).
Google Scholar
[22]
Yu Zhisheng. Automobile theory [M]. Beijing: mechanical industry press, 2012, 05(in Chinese).
Google Scholar
[23]
DuanWanpu. The technology and commercial operation of the electric vehicles[M]. Beijing: China electric power press, 2013, 01(in Chinese)Wang Zhenpo, Sun Fengchun. Analysis of Energy Consumption Distribution and Factors of Influence in Electric Vehicles[J]. Journal of Beijing Institute of Technology, 2004, (04) (in Chinese).
DOI: 10.21474/ijar01/7996
Google Scholar
[24]
Wen Huimin, Hu Zhongwei, Guo Jifu, Shao Changfeng. Evaluation of traffic index and its need management[C]. 2011 2nd International Conference on Management Science and Engineering Advances in Artificial Intelligence, Vol. 1-6(in Chinese).
Google Scholar
[25]
Shu Guohui. The Research on the Rules of Publie TransPort Passenger Flow Based on Data Mining [D]. Beijing: Beijing jiaotong university, master's thesis, 2009(in Chinese).
Google Scholar