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双能量源纯电动汽车的最新研究进展 被引量:3

Recent Research Progress of Blade Electric Vehicles with Hybrid Energy Sources
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摘要 对双能量源纯电动汽车的最新研究进展进行了分析。从国内、国外两方面,分别对双能量源纯电动汽车能量管理系统的技术研究进行阐述,列举了最新研究成果。对目前应用的电动汽车双能量源能量控制策略进行分析,指出各类控制策略的优缺点和应用前景,阐明目前需进一步深入研究纯电动汽车双能量源问题建模及优化控制策略。 The latest research progress of blade electric vehicle with battery-ultra-capacitor hybrid energy sources is ana-lyzed. From two aspects of domestic and foreign, the energy management system of blade electric vehicle is described, and the latest research results are listed. The application of energy control strategy of dual energy source is analyzed. Advantages and disadvantages of the control strategies and there application prospects are pointed out. At last, the most needed research on blade electric vehicle with hybrid energy sources is clarified.
作者 邢峰
出处 《机械研究与应用》 2016年第2期206-207,209,共3页 Mechanical Research & Application
基金 重庆市科委科学技术研究项目(cstc2015jcyj A1092)
关键词 双能量源 纯电动汽车 研究进展 dual-energy system blade electric vehicle research progress
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参考文献8

  • 1John M. Miller, Richard Smith. Ultra-Capacitor Assisted ElectricDrives for Transportation[A]. IEEE International Electric Machinesand Drives Conference[C],2003,2(2):670-676.
  • 2Matthew Z. Dual-Source Energy Storage-Control and PerformanceAdvantages in Advanced Vehicles[C]. EVS-20,Proceeding,2003.
  • 3Wang K, Lee F C. Operation principles of bi-directional fullbridgeDC/ DC converter with unified soft-switching scheme and soft-starting capability[C]. Applied Power Electronics Conference andExposition,2000:111-118.
  • 4Ortuzar M, Moreno J, Dixon J. Ultracapacitor-Based Auxiliary EnergySystem for an Electric Vehicle: Implementation and Evaluation[J]. Industrial Electronics, IEEE Transactions on (S0278-0046),2007,54(4):2147-2156.
  • 5Matthew Z, Tony M. Analysis of fuel cell vehicle hybridization andimplications for energy storage devices [C]. Advance AutomotiveBattery Conference, San Francisco, 2004,2(4):25-55.
  • 6刘志强,过学迅.纯电动汽车电液复合再生制动控制[J].中南大学学报(自然科学版),2011,42(9):2687-2691. 被引量:27
  • 7张剑波,卢兰光,李哲.车用动力电池系统的关键技术与学科前沿[J].汽车安全与节能学报,2012,3(2):87-104. 被引量:91
  • 8张昌利,张亚军,闫茂德,汪贵平.双能量源纯电动汽车再生制动模糊控制与仿真[J].系统仿真学报,2011,23(2):233-238. 被引量:35

二级参考文献39

  • 1PENG,Dong(彭栋),YIN,Cheng-liang(殷承良),ZHANG,dian-wu(张建武).An Investigation into Regenerative Braking Control Strategy for Hybrid Electric Vehicle[J].Journal of Shanghai Jiaotong university(Science),2005,10(4):407-412. 被引量:7
  • 2李贵远,陈勇.动力电池与超级电容混合驱动系统设计与仿真[J].系统仿真学报,2007,19(1):101-105. 被引量:27
  • 3赵国柱,魏民祥,杨正林.基于制动稳定性要求的ADVISOR再生制动模块的开发[J].机械与电子,2007,25(6):10-14. 被引量:8
  • 4余志生.汽车理论[M].北京:机械工业出版社,1985..
  • 5Barrade P, Buffer A. Supercapacitors as Energy Buffers: a Solution for Elevators and for Electric Buses Supply [C]// Proceedings of the IEEE Power Conversion Conference, Osaka, Japan, 2002. USA: IEEE, 2002:1160-1165.
  • 6Ortuzar M E, Moreno J, Dixon J W. Ultracapacitor-based Auxiliary Energy System for an Electric Vehicle: Implementation and Evaluation [J]. IEEE Transactions on Industrial Electronics (S0278-0046), 2007, 54(4): 2147-2156.
  • 7Walker A M, Lamperth M U, Wilkins S. On Friction Braking Demand with Regenerative Braking [J/OL]. SAE International Journal (S1946-3901), 2002, 2002-01-2581.
  • 8Wang L, Bai W. Development and Simulation of Electric Vehicle Based on ADVISOR [J]. Journal of Southeast University-English Edition (S1003-7985), 2006, 22(2): 196-199.
  • 9Baisden A C, Emadi A. ADVISOR-based Model of a Battery and an Ultra-capacitor Energy Source for Hybrid Electric Vehicles [J]. IEEE Transactions on Vehicular Technology (S0018-9545), 2004, 53(1): 199-205.
  • 10GAO Yi-min, CHEN Li-ping, Ehsani M. Investigation of the effectiveness of regenerative braking for EV and HEV[J]. SAE Paper, 1999-01-2910.

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