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电动汽车供电能源优化组合及智能充电策略 被引量:12

Energy Supply Optimization and Intelligent Charging Strategy of Electric Vehicles
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摘要 为评估电动汽车充电过程中不同种类可再生能源的经济性,构建了智能充电优化模型,得出电动汽车供电电源的最佳电能组合,所涉及发电能源包括风电、光伏发电以及通过可再生能源配额进行补偿的传统化石燃料发电。通过对可再生能源利用情况和电动汽车充电特性进行分析,采用启发式动态规划方法建立智能充电模型,研究风能、太阳能接入电动汽车充电系统后与传统发电能源的协同优化机制,并对电动汽车充电能源组合中各能源的经济性进行敏感性分析。结果表明,电动汽车智能充电策略有利于提高可再生能源的利用率,降低其负荷不稳定性对电力系统的影响,并且风力发电接入充电系统具有成本优化效益,能有效降低充电成本。 In order to evaluate the economy of different renewable energy for electric vehicle charging, this paper constructed the optimization model of intelligent charging, and obtained the best power combination for the power supply of electric vehicle, including wind power, photovoltaic power generation and traditional fossil fuel power compensated by renewable portfolio standard. Based on the analysis of renewable energy utilization status and electric vehicle charging characteristics, an intelligent charging model was established using heuristic dynamic programming method, which aimed at studying the collaborative optimization mechanism of wind, solar and conventional energy generation in the electric vehicle charging system. Additionally, sensitivity analysis was carded out on the energy economy in energy resource combination for electric vehicle charging. The results show that smart charging strategies for electric vehicle can improve the utilization of renewable energy, and reduce the impact of load instability on the power system; as well the wind power in the charging system has the cost optimization efficiency which can effectively reduce the charging cost.
出处 《电力建设》 2013年第12期111-115,共5页 Electric Power Construction
关键词 电动汽车 智能充电模型 可再生能源 风电接入 可再生能源配额 electric vehicle intelligent charging model renewable energy wind power integration renewable portfolio standard heuristic dynamic programming
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  • 1苏舒,孙近文,林湘宁,李咸善.电动汽车智能充电导航[J].中国电机工程学报,2013,33(S1):59-67. 被引量:40
  • 2DL/T5044-2004电力工程直流系统设计技术规程[S].北京:中国电力出版社,2004.
  • 3Peterson S B, Apt J, Whitacre J F. Lithium-ion battery cell degradation resulting from realistic vehicle and vehicle-to-grid utilization [ J ]. Journal of Power Sources, 2010, 195 ( 8 ) : 2385-2392.
  • 4Taylor J, Maitra A, Alexander M,et al. Evaluation of the impact of plug-in electric vehicle loading on distribution system operations [ C]//Proceedings of IEEE Power and Energy Society General Meeting. Calgary, Canada: Energy Development and Power Generation Committee, 2009 : 1-6.
  • 5Sortomme E, El-Sharkawi M A. Optimal chargingstrategies for unidirectional vehicle-to-grid[J] . IEEETrans on Smart Grid, 2011,2(1): 131-138.
  • 6陈一鸣,管克江,黄发红,等.普及电动车,多国加快充电网点建设[N].人民日报,2014-8-11(22).
  • 7Sortomme E, E1-Sharkawi M A. Optimal charging strategies for unidirectional vehicle-to-grid[J]. IEEE Trans. on SmartGrid, 2011, 2(1): 131-138.
  • 8陈一鸣,管克江,黄发红,等.普及电动车,多国加快充电网点建设[N].人民日报,2014-8-11(22).
  • 9陈新琪,李鹏,胡文堂,徐嘉龙,朱炯,张鹏飞.电动汽车充电站对电网谐波的影响分析[J].中国电力,2008,41(9):31-36. 被引量:93
  • 10龙妍,黄素逸,刘可.大系统中物质流、能量流与信息流的基本特征[J].华中科技大学学报(自然科学版),2008,36(12):87-90. 被引量:37

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