期刊文献+

Review and Development of Electric Motor Systems and Electric Powertrains for New Energy Vehicles 被引量:12

原文传递
导出
摘要 This paper presents a review on the recent research and technical progress of electric motor systems and electric powertrains for new energy vehicles.Through the analysis and comparison of direct current motor,induction motor,and synchronous motor,it is found that permanent magnet synchronous motor has better overall performance;by comparison with converters with Si-based IGBTs,it is found converters with SiC MOSFETs show significantly higher efficiency and increase driving mileage per charge.In addition,the pros and cons of different control strategies and algorithms are demonstrated.Next,by comparing series,parallel,and power split hybrid powertrains,the series-parallel compound hybrid powertrains are found to provide better fuel economy.Different electric powertrains,hybrid powertrains,and range-extended electric systems are also detailed,and their advantages and disadvantages are described.Finally,the technology roadmap over the next 15 years is proposed regarding traction motor,power electronic converter and electric powertrain as well as the key materials and components at each time frame.
出处 《Automotive Innovation》 CSCD 2021年第1期3-22,共20页 汽车创新工程(英文)
  • 相关文献

参考文献5

二级参考文献53

  • 1EL-REFAIE A. M. Fault-tolerant permanent magnet machines: a review [ J]. IEE Proceedings on Power Application, 2011,5 ( 1 ) : 59 - 74.
  • 2CRAIG E, MECROW B. C, ATKINSON D. J. A fault detection procedure for single phase bridge converters [ C ]//Proceedings of the fifth European conf. power electronics and applications, Sep- tember 13 - 16,1993, Brighton, UK. 1993:466 -471.
  • 3JACK A. G, MECROW B. C, HAYLOCK J. A comparative stud- y of permanent magnet and switched reluctance motors for high performance fault-tolerant applications [ J ]. IEEE Transitions on Industry Applications, 1996, 32 (4) : 892 - 895.
  • 4MECROW B. C, JACK A. G, HAYLOCK J. A, COLES J. Fault-tolerant permanent magnet machine drives [ J ]. IEE Pro- ceedings on Electric Power Application, 1996, 143 ( 6 ) : 437 -442.
  • 5MITCHAM A. J, JACK A. G, HAYLOCK J. A, COLES J. Fa- vorable slot and pole combinations for fanh-tolerant PM machines [ J] , IEE Proceedings on Electric Power Application, 2004, 151, (5) :520 -525.
  • 6ISHAK D, Zhu Z. Q, HOWE D. Eddy-current loss in the rotor magnets of permanent-magnet brushless machines having a frac- tional number of slots per pole [J]. IEEE Transactions on Magnet- ics, 2005, 41 (9) :2462 -2469.
  • 7ATKINSON G. J, MECROW B. C, JACK A. G, ATKINSON D. J, etl. The analysis of losses in high-power fault-tolerant machines for aerospace applications [ J ]. IEEE Transactions on Industrial Application, 2006, 42(5): 1162- 1170.
  • 8BIANCHI N, FORNASIERO E. Impact of MMF space harmonic on rotor losses in fractional-slot permanent-magnet machines [ J]. IEEE Transactions on Energy Conversion, 2009, 24(2) :323 -328.
  • 9Chan C C,Bouscayrol A,Chen K.Electric, hybrid and fuel cell vehicles: Architectures and modeling. IEEE Transactions on Vehicular Technology . 2010
  • 10Hissel D,Candusso D,Harel F.Fuzzy-clustering durability diagnosis of polymer electrolyte fuel cells dedicated to tranportation applications. IEEE Transactions on Vehicular Technology . 2007

共引文献123

同被引文献114

引证文献12

二级引证文献33

相关作者

内容加载中请稍等...

相关机构

内容加载中请稍等...

相关主题

内容加载中请稍等...

浏览历史

内容加载中请稍等...
;
使用帮助 返回顶部