吉林大学学报(工学版) ›› 2016, Vol. 46 ›› Issue (2): 340-347.doi: 10.13229/j.cnki.jdxbgxb201602002

• 论文 • 上一篇    下一篇

基于成本优化的插电式混合动力参数匹配

王庆年, 王光平, 王鹏宇, 韩彪, 李峰   

  1. 吉林大学 汽车仿真与控制国家重点实验室,长春 130022
  • 收稿日期:2015-01-20 出版日期:2016-02-20 发布日期:2016-02-20
  • 通讯作者: 王鹏宇(1979-),男,副教授,博士.研究方向:节能与新能源汽车.E-mail:wangpy@jlu.edu.cn E-mail:wangqn@jlu.edu.cn
  • 作者简介:王庆年(1952-),男,教授,博士生导师.研究方向:节能与新能源汽车.E-mail:wangqn@jlu.edu.cn
  • 基金资助:
    "863"国家高技术研究发展计划项目(W65-BK-2012-0007)

Parameter matching for plug-in hybrid electric vehicle based on cost optimization

WANG Qing-nian, WANG Guang-ping, WANG Peng-yu, HAN Biao, LI Feng   

  1. State Key Laboratory of Automotive Simulation and Control, Jilin University, Changchun 130022, China
  • Received:2015-01-20 Online:2016-02-20 Published:2016-02-20

摘要: 在满足整车性能约束条件的基础上,以整车动力部件制造成本和年均使用成本作为评价指标,建立了插电式混合动力汽车(PHEV)动力总成设计分析模型,根据不同类型用户的用车习惯进行分类,针对不同的纯电动续驶里程(AER)设计要求,优化整车动力总成性能参数.结果表明:各设计要求的PHEV总年均优化成本与原车型相比降低了6.0%~20.0%,并优选得到AER最佳设计要求为40 km,与其他各AER及原车型相比,在不同续驶里程分布规律下,其年均优化成本最高可降低24.9%.

关键词: 车辆工程, 插电式混合动力汽车, 动力总成, 纯电动续驶里程, 参数优化

Abstract: To meet the vehicle performance constraints, a design and analysis model of the powertrain of Plug-in Hybrid Electric Vehicle (PHEV) was proposed. In this model the manufacturing cost of the vehicle dynamic components and the annual usage cost were taken as the evaluation indices, and the car users' habits were classified. According to different design requirements of All-electric Range (AER), the powertrain performance parameters of PHEV were optimized. The results show that, compared with the original vehicle, the total annual optimization cost of the designed PHEV for different AER is reduced by 6.0% ~ 20.0%. The best optimization design requirement for AER is 40 km. Compared with other AER and the original vehicle, the annual optimization cost can be reduced by up to 24.9%.

Key words: vehicle engineering, plug-in hybrid electric vehicle(PHEV), powertrain, all-electric range(AER), parameter optimization

中图分类号: 

  • U469.7
[1] 王菁,谭德荣. 基于Cruise的Plug-in并联混合动力客车动力参数匹配与仿真[J]. 农业装备与车辆工程,2012,50(7):18-21.
Wang Jing,Tan De-rong. Parameter matching and simulation of the plug-in hybrid electric bus based on cruise[J]. Agricultural Equipment & Vehicle Engineering,2012,50(7):18-21.
[2] 秦孔建,陈海峰,方茂东,等. 插电式混合动力电动汽车排放和能耗评价方法研究[J]. 汽车技术,2010(7):11-16.
Qin Kong-jian, Chen Hai-feng,Fang Mao-dong, et al.Investigation on the evaluation methods for fuel consumption and emissions of PHEV[J]. Automobile Technology,2010(7):11-16.
[3] 吴为理,兰凤崇,陈吉清,等. Plug-in 混合动力汽车动力系统参数设计成本效益分析[J]. 机械科学与技术,2013,32(3):383-387.
Wu Wei-li,Lan Feng-chong, Chen Ji-qing,et al.Cost-benefit analysis of parameter design of powertrain for plug-in hybrid electric vehicle[J]. Mechanical Science and Technology for Aerospace Engineering,2013,32(3):383-387.
[4] Simpson A.Cost-benefit analysis of plug-in hybrid electric vehicle technology[C]//22nd International Battery,Hybrid and Fuel Cell Electric Vehicle Symposium and Exhibition,Yokohama,Japan,2006:23-28.
[5] Golbuff S. Design optimization of a plug-in hybrid electric vehicle. georgia institute of technology[C]//SAE Technical Paper,2007.
[6] 张博. 可外接充电混合动力汽车能量管理策略研究[D].长春:吉林大学汽车工程学院,2009.
Zhang Bo. Study on energy management strategy for plug-in electric vehicle[D]. Changchun:College of Automotive Engineering, Jilin University,2009.
[7] Wu Xiao-lan,Cao Bing-gang, Li Xue-yan, et al.Component sizing optimization of plug-in hybrid electric vehicles[J]. Applied Energy,2011,88(3):799-804.
[8] 张爱国. 插电式混合动力轿车动力总成参数匹配及控制策略研究[D]. 广州:华南理工大学机械与汽车工程学院,2011.
Zhang Ai-guo. Study on assembly parameter matching and control strategy of plug-in hybrid electric vehicle[D]. Guangzhou: School of Mechanical and Automotive Engineering, South China University of Technology,2011.
[9] 周玮. Plug_in混合动力轿车整车控制策略的研究[D]. 天津:河北工业大学机械工程学院,2010.
Zhou Wei. Research on control strategy in vcu of plug-in hybrid electric vehicle[D]. Tianjin:School of Mechanical Engineering, Hebei University of Technology,2010.
[10] Markel T,O'Keefe M,Simpson A,et al.Plug-in HEVs:a near-term option to reduce petroleum consumption from FY05 milestone[DB/OL].[2014-12-30].http://www.nrel.gov/docs/fy06osti/39415.pdf.
[11] Graham R,Unnasch S, Kassoy E,et al.Comparing the benefits and impacts of hybrid electric vehicle options[DB/OL].[2014-12-30].http://www.ourenergypolicy.org/wp-content/uploads/2011/11/2001_07_EPRI_ComparingHybridElectricVehicleOptions.pdf.
[12] Golbuff S.Optimization of a plug-in hybrid electric vehicle[D]. Atlanta:Science in Mechanical Engineering of Georgia Institute of Technology,2006.
[13] Lipman T E, Delucchi M A.Hybrid electric vehicle design retail and lifecycle cost analysis[DB/OL]. [2015-01-06].http://tsrc.berkeley.edu/sites/default/files/Lipman_EV1_2003.pdf.
[14] 李治萱. DCT混合动力汽车的构型分析,参数匹配及优化控制研究[D]. 长春:吉林大学汽车工程学院,2013.
Li Zhi-xuan. Configuration analysis, parameters matching and research on the optimal control for the HEV equipped with DCT[D]. Changchun:College of Automotive Engineering, Jilin University,2013.
[15] 杨名. PHEV混合动力汽车动力系统匹配[D]. 长春:吉林大学汽车工程学院,2011.
Yang Ming. Parameter matching of power system in PHEV[D]. Changchun:College of Automotive Engineering,Jilin University, 2011.
[16] Jin Li-qiang,Zeng Xia-hua,Wang Wei. The control strategy and cost analysis for Series Plug-in hybrid electric vehicle[J]. Proceedings of 2nd IEEE International Conference on Advanced Computer Control,2010(2):350-354.
[1] 常成,宋传学,张雅歌,邵玉龙,周放. 双馈电机驱动电动汽车变频器容量最小化[J]. 吉林大学学报(工学版), 2018, 48(6): 1629-1635.
[2] 席利贺,张欣,孙传扬,王泽兴,姜涛. 增程式电动汽车自适应能量管理策略[J]. 吉林大学学报(工学版), 2018, 48(6): 1636-1644.
[3] 何仁,杨柳,胡东海. 冷藏运输车太阳能辅助供电制冷系统设计及分析[J]. 吉林大学学报(工学版), 2018, 48(6): 1645-1652.
[4] 那景新,慕文龙,范以撒,谭伟,杨佳宙. 车身钢-铝粘接接头湿热老化性能[J]. 吉林大学学报(工学版), 2018, 48(6): 1653-1660.
[5] 刘玉梅,刘丽,曹晓宁,熊明烨,庄娇娇. 转向架动态模拟试验台避撞模型的构建[J]. 吉林大学学报(工学版), 2018, 48(6): 1661-1668.
[6] 赵伟强, 高恪, 王文彬. 基于电液耦合转向系统的商用车防失稳控制[J]. 吉林大学学报(工学版), 2018, 48(5): 1305-1312.
[7] 宋大凤, 吴西涛, 曾小华, 杨南南, 李文远. 基于理论油耗模型的轻混重卡全生命周期成本分析[J]. 吉林大学学报(工学版), 2018, 48(5): 1313-1323.
[8] 朱剑峰, 张君媛, 陈潇凯, 洪光辉, 宋正超, 曹杰. 基于座椅拉拽安全性能的车身结构改进设计[J]. 吉林大学学报(工学版), 2018, 48(5): 1324-1330.
[9] 那景新, 浦磊鑫, 范以撒, 沈传亮. 湿热环境对Sikaflex-265铝合金粘接接头失效强度的影响[J]. 吉林大学学报(工学版), 2018, 48(5): 1331-1338.
[10] 王炎, 高青, 王国华, 张天时, 苑盟. 混流集成式电池组热管理温均特性增效仿真[J]. 吉林大学学报(工学版), 2018, 48(5): 1339-1348.
[11] 金立生, 谢宪毅, 高琳琳, 郭柏苍. 基于二次规划的分布式电动汽车稳定性控制[J]. 吉林大学学报(工学版), 2018, 48(5): 1349-1359.
[12] 隗海林, 包翠竹, 李洪雪, 李明达. 基于最小二乘支持向量机的怠速时间预测[J]. 吉林大学学报(工学版), 2018, 48(5): 1360-1365.
[13] 王德军, 魏薇郦, 鲍亚新. 考虑侧风干扰的电子稳定控制系统执行器故障诊断[J]. 吉林大学学报(工学版), 2018, 48(5): 1548-1555.
[14] 胡满江, 罗禹贡, 陈龙, 李克强. 基于纵向频响特性的整车质量估计[J]. 吉林大学学报(工学版), 2018, 48(4): 977-983.
[15] 刘国政, 史文库, 陈志勇. 考虑安装误差的准双曲面齿轮传动误差有限元分析[J]. 吉林大学学报(工学版), 2018, 48(4): 984-989.
Viewed
Full text


Abstract

Cited

  Shared   
  Discussed   
No Suggested Reading articles found!