1.河南工学院 车辆与交通工程学院, 河南 新乡 453003
赵向阳(1981— ),男,河南洛阳人,硕士,副教授,主要从事新能源汽车性能测试方面的研究。
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赵向阳,吴启斌.基于CLTC工况的纯电动汽车单踏板再生制动系统经济性研究[J].机械传动,2021,45(05):26-31.
Zhao Xiangyang,Wu Qibin.Research on Economic Performance of Single Pedal Brake for Pure Electric Vehicles based on CLTC Working Condition[J].Journal of Mechanical Transmission,2021,45(05):26-31.
赵向阳,吴启斌.基于CLTC工况的纯电动汽车单踏板再生制动系统经济性研究[J].机械传动,2021,45(05):26-31. DOI: 10.16578/j.issn.1004.2539.2021.05.004.
Zhao Xiangyang,Wu Qibin.Research on Economic Performance of Single Pedal Brake for Pure Electric Vehicles based on CLTC Working Condition[J].Journal of Mechanical Transmission,2021,45(05):26-31. DOI: 10.16578/j.issn.1004.2539.2021.05.004.
研究了基于CLTC(China light-duty test cycle)工况下的纯电动汽车匹配单踏板再生制动系统的经济性能。对比了CLTC和NEDC(New european driving cycle)两种工况差异,并基于某车型在AVL_CURISE平台搭建虚拟仿真模型,建立配置单踏板制动能量回收控制系统的纯电动汽车模型;对比了不同工况下配置单踏板系统和原并联制动再生系统效果经济性能差异。仿真结果表明,单踏板再生制动系统能量回收效果优于原并联再生制动系统,纯电动汽车NEDC切换为CLTC工况续驶里程差异较为有限。
The economic performance of single pedal matched regenerative braking system for pure electric vehicle under CLTC condition is studied. Firstly, the differences between the two working conditions of CLTC and NEDC are compared, and a virtual simulation model is built on AVL_CURISE platform based on a certain vehicle, a pure electric vehicle model equipped with a single pedal braking energy recovery control system is established. The economic performance differences between the single pedal system and the original parallel braking regenerative system are compared under different working conditions. The simulation results show that, the single pedal braking system is better than the former parallel braking system, the replacement of NEDC with CLTC have limited impact on driving range.
CLTC工况NEDC工况单踏板制动回收系统纯电动汽车AVL_CRUISE经济性
CLTC working conditionNEDC working conditionSingle pedal brake recovery systemPure electric vehicleAVL_CRUISEEconomic performance
初亮,刘达亮,刘宏伟,等.纯电动汽车制动能量回收评价方法研究[J].汽车工程,2017,39(4):471-479.
CHU Liang,LIU Daliang,LIU Hongwei,et al. A study on the evaluation method of braking energy recovery in battery electric vehicle[J].Automotive Engineering,2017,39(4):471-479.
王计广,李孟良,徐月云,等.电动汽车制动能量回收系统评价方法研究[J].汽车技术,2014(12):35-39.
WANG Jiguang,LI Mengliang,XU Yueyun,et al.The study on evaluation method of braking energy recovery system for electric vehicle[J].Automobile Technology,2014(12):35-39.
盘朝奉,张秀丽,陈燎,等.纯电动汽车再生制动系统能耗特性[J].河南科技大学学报(自然科学版),2015(6):20-25.
PAN Chaofeng,ZHANG Xiuli,CHEN Liao,et al.Energy consumption characteristics of regenerative braking system for pure electric vehicle[J].Journal of Henan University of Science and Technology(Natural Science),2015(6):20-25.
HE H W,WANG C B,JIA H.A single-pedal regenerative braking control strategy of accelerator pedal for electric vehicles based on adaptive fuzzy control algorithm[C]//CUR20118-Applied Energy Symposium and Forum 2018:Low Carbon Cities and Urban Energy Systems,2018(152):624-629.
LIU W,QI H Z,LIU X T,et al.Evaluation of regenerative braking based on single-pedal control for electric vehicles[J].Frontiers of Mechanical Engineering,2020,15(1):166-179.
马欢欢,王伟,曲辅凡.纯电动汽车单踏板制动关键技术研究 [C]//中国汽车工程学会.2019中国汽车工程学会年会论文集.北京:中国汽车工程学会,2019:760-764.
MA Huanhuan,WANG Wei,QU Fufan.Research on key technology of single pedal brake for pure electric vehicle[C]//China Society of Automotive Engineering.Proceedings of the 2019 Annual Meeting of China Society of Auto⁃motive Engineering.Beijing:China Society of Automotive Engineering,2019:760-764.
何艳则,李敏,刘国弟,等.混合动力串并联制动能量回收策略设计与仿真[J].计算机辅助工程,2018,27(4):27-30.
HE Yanze,LI Min,LIU Guodi,et al.Design and simulation on hybrid brake energy recovery strategy of parallel and series for hybrid power[J].Computer Aided Engineering,2018,27(4):27-30.
刘威,祁宏钟,刘新田,等.纯电动汽车串联式再生制动控制策略建模与仿真[J].轻工机械,2019(1):70-73.
LIU Wei,QI Hongzhong,LIU Xintian,et al.Modeling and simulation of serial regenerative braking control strategy for pure electric vehicle[J].Light Industry Machinery,2019(1):70-73.
郭栋,朱文平,孙宇航,等.城市电动公交车制动能量回收控制策略研究[J].汽车工程,2016,38(3):269-273.
GUO Dong,ZHU Wenping,SUN Yuhang,et al.A research on braking energy recovery control strategy for electric city bus[J].Automotive Engineering,2016,38(3):269-273.
全国汽车标准化技术委员会.中国汽车行驶工况 第1部分:轻型汽车:GB/T 38146.1-2019[S].北京:中国标准出版社,2019:3-4.
National Technical Commttee of Auto Standardization.China automotive test cycle Part 1:Light-duty vehicles:GB/T 38146.1-2019[S].Beijing:Standards Press of China,2019:3-4.
刘欣,程瑞涛,马相明.WLTC与NEDC循环油耗差异性研究[C]//中国汽车工程学会.2019中国汽车工程学会年会论文集.北京:中国汽车工程学会,2019:528-533.
LIU Xin,CHENG Ruitao,MA Xiangming.Research on the difference of cycle fuel consumption between WLTC and NEDC[C]//China Society of Automotive Engineering.Proceedings of the 2019 Annual Meeting of China Society of Auto⁃motive Engineering.Beijing:China Society of Automotive Engineering,2019:528-533.
郭千里,赵冬昶,陈平,等.WLTC 与NEDC比较及对汽车油耗的影响浅析[J].汽车工程学报,2017,7(3):196-204.
GUO Qianli,ZHAO Dongchang,CHEN Ping,et al.Comparison of WLTC & NEDC and preliminary study of their impact on automobile fuel consumption[J].Chinese Journal of Automotive Engineering,2017,7(3):196-204.
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