期刊文献+

基于模糊控制的混联式混合动力汽车能量管理策略 被引量:4

Energy management strategy of hybrid electric vehicle based on fuzzy control
下载PDF
导出
摘要 混合动力汽车由于能够减少燃油消耗和降低排放而迅速发展。在各种混合动力汽车中,混联式混合动力汽车结合串联和并联混合的优点,其工作模式的优化取决于许多部件,如发动机、电机/发电机、电池和功率分流装置等部件。混联式混合动力汽车控制策略的开发比其他混合动力汽车更复杂。以丰田卡罗拉混合动力汽车为例研究混联式混合动力汽车的能量管理策略。基于对典型驾驶循环的效率分析,提出优化混联式混合动力汽车能量管理的模糊转矩控制策略。建立基于Matlab/simulink的车辆模型,仿真结果表明车辆油耗和性能明显提高。 Hybrid electric vehicle(HEV)has developed rapidly because of their ability to reduce fuel consumption and emissions.Among all kinds of HEVs,the series-parallel HEV combines the advantages of series and parallel hybrid.The optimization of its working mode depends on many components,such as engine,motor/generator,battery and power split device.The development of control strategy for the series-parallel HEV is more complex than other HEV.Based on the efficiency analysis of typical driving cycles,a fuzzy torque control strategy is proposed to optimize the energy management of HEV.A vehicle model based on MATLAB/simulink is established.The simulation result shows that the fuel consumption and performance of the vehicle are improved significantly.
作者 张金柱 韩玉敏 孙远涛 王云龙 ZHANG Jinzhu;HAN Yumin;SUN Yuantao;WANG Yunlong(Heilongjiang Institute of Technology,Harbin 150050,China)
机构地区 黑龙江工程学院
出处 《交通科技与经济》 2019年第5期53-59,共7页 Technology & Economy in Areas of Communications
基金 哈尔滨市应用技术研究与开发资助项目(优秀学科带头人)A类(2017RAXXJ 030) 黑龙江省青年科学基金(QC2015050)
关键词 混合动力汽车 混联式 能量管理 模糊控制 驾驶循环 hybrid electric vehicle series-parallel type energy management fuzzy control driving cycle
  • 相关文献

参考文献4

二级参考文献107

  • 1赵子亮,刘东秦,刘明辉,李骏,王庆年.并联混合动力汽车控制策略与仿真分析研究[J].机械工程学报,2005,41(12):13-18. 被引量:28
  • 2寇晓丽,刘三阳.基于模拟退火的粒子群算法求解约束优化问题[J].吉林大学学报(工学版),2007,37(1):136-140. 被引量:28
  • 3房立存,秦世引.基于多目标遗传算法的混合电动汽车参数优化[J].汽车工程,2007,29(12):1036-1040. 被引量:15
  • 4Chau K T, Chan C C. Emerging energy-efficient technologies for hybrid electric vehicles. Proceedings of the IEEE, 2007, 95(4):821-835.
  • 5Salmasi F R. Control strategies for hybrid electric vehicles:evolution, classification, comparison, and future trends. IEEE Transactions on Vehicular Technology, 2007, 56(5):2393-2404.
  • 6Ehsani M, Gao Y M, Emadi A. Modern Electric, Hybrid Electric, and Fuel Cell Vehicles:Fundamentals, Theory, and Design (2nd edition). New York:CRC Press, 2009.
  • 7Murphey Y L, Park J, Chen Z H, Kuang M L, Masrur M A, Phillips A M. Intelligent hybrid vehicle power control-Part I:machine learning of optimal vehicle power. IEEE Transactions on Vehicular Technology, 2012, 61(8):3519-3530.
  • 8Somayajula D, Meintz A, Ferdowsi M. Designing efficient hybrid electric vehicles. IEEE Vehicular Technology Magazine, 2009, 4(2):65-72.
  • 9Anbaran S A, Idris N R N, Jannati M, Aziz M J, Alsofyani I. Rule-based supervisory control of split-parallel hybrid electric vehicle. In:Proceedings of the 2014 IEEE Conference on Energy Conversion. Johor Bahru:IEEE, 2014. 7-12.
  • 10Lin C C, Peng H, Grizzle J W, Kang J M. Power management strategy for a parallel hybrid electric truck. IEEE Transactions on Control Systems Technology, 2003, 11(6):839-849.

共引文献126

同被引文献45

引证文献4

二级引证文献2

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