Energy Management System of Electric Bus Equipped with Regenerative Braking and Range Extender

被引:11
作者
Kusuma, Christopher Fernaldy [1 ]
Budiman, Bentang Arief [1 ,2 ]
Nurprasetio, Ignatius Pulung [1 ]
Islameka, Metha [3 ]
Masyhur, Abdul Hakim [1 ]
Aziz, Muhammad [4 ]
Reksowardojo, Iman Kartolaksono [1 ]
机构
[1] Inst Teknol Bandung, Fac Mech & Aerosp Engn, Bandung 40132, Indonesia
[2] Inst Teknol Bandung, Natl Ctr Sustainable Transportat Technol, Ganesha St 10, Bandung 40132, Indonesia
[3] Inst Teknol Bandung, Fac Ind Engn, Bandung 40132, Indonesia
[4] Univ Tokyo, Inst Ind Sci, Tokyo 1538505, Japan
关键词
Electric bus; Range extender; Regenerative braking; Energy management system; Battery state of charge; Energy consumption; VEHICLES; STRATEGY; DESIGN; HYBRID; EFFICIENCY; MODEL;
D O I
10.1007/s12239-021-0142-z
中图分类号
TH [机械、仪表工业];
学科分类号
0802 ;
摘要
Electric buses are usually designed with various energy management features to overcome the limited cruising range problem. This paper reveals the impact of different energy management systems applied in the electric bus intended for rapid transit usage on battery state of charge and energy consumption. Different systems can be distinguished based on combinations of range extender usages and regenerative braking strategies. Simulations have been done using models developed from the fundamental theory of vehicle engineering and the bus's design parameters. The results show that the minimum energy consumption can be achieved by an energy management system, adopting a serial regenerative braking strategy without the use of a range extender. It is also found that the serial regenerative braking strategy can save up to 15 % energy compared to the absence of the regenerative braking system. In comparison, the absence of a range extender contributes to a 7 % reduction in energy consumption. However, considering the range anxiety of the driver, the designed electric bus for rapid transit is recommended to utilize both the range extender and parallel regenerative braking strategy. The developed model in this work can be implemented to redesign or further optimize specific components and operating procedures of the bus.
引用
收藏
页码:1651 / 1664
页数:14
相关论文
共 50 条
[31]   Design of Regenerative Braking System and Energy Storage with Supercapacitors as Energy Buffers [J].
Michael, Siluvai M. ;
Mtengi, Bokani ;
Prabaharan, S. R. S. ;
Zungeru, Adamu Murtala ;
Ambafi, James Garba .
INTERNATIONAL JOURNAL OF ELECTRICAL AND COMPUTER ENGINEERING SYSTEMS, 2024, 15 (04) :321-333
[32]   A control strategy for regenerative braking of parallel hybrid electric city-bus [J].
Li, Yushan ;
Zeng, Qingliang ;
Wang, Liang ;
Han, Yilun .
ISTM/2007: 7TH INTERNATIONAL SYMPOSIUM ON TEST AND MEASUREMENT, VOLS 1-7, CONFERENCE PROCEEDINGS, 2007, :5659-5662
[33]   Improving Energy Recovery Rate of the Regenerative Braking System by Optimization of Influencing Factors [J].
Xu, Lei ;
He, Xiaohui ;
Shen, Xinmin .
APPLIED SCIENCES-BASEL, 2019, 9 (18)
[34]   Design and Implementation of a Regenerative Braking System for Electric Bicycles with a DSP Controller [J].
Hua, Chih-Chiang ;
Kao, Shih-Jyun ;
Fang, Yi-Hsiung .
2013 1ST INTERNATIONAL FUTURE ENERGY ELECTRONICS CONFERENCE (IFEEC 2013), 2013, :641-645
[35]   Design and Implementation of a Regenerative Braking System for Electric Bicycles Based on DSP [J].
Hua, Chih-Chiang ;
Kao, Shih-Jyun .
2011 6TH IEEE CONFERENCE ON INDUSTRIAL ELECTRONICS AND APPLICATIONS (ICIEA), 2011, :703-707
[36]   IEEE VTS Motor Vehicles Challenge 2018-Energy Management of a Range Extender Electric Vehicle [J].
Depature, Clement ;
Pagerit, Sylvain ;
Boulon, Loic ;
Jemei, Samir ;
Rousseau, Aymeric ;
Bouscayrol, Alain .
2017 IEEE VEHICLE POWER AND PROPULSION CONFERENCE (VPPC), 2017,
[37]   Control strategy of regenerative braking system in electric vehicles [J].
Zhang, Liang ;
Cai, Xue .
CLEANER ENERGY FOR CLEANER CITIES, 2018, 152 :496-501
[38]   A four-step control algorithm and downshift schedule of a seamless shift transmission equipped on electric vehicles during the regenerative braking process [J].
Tai, Yuzhuo ;
Song, Jian ;
Yu, Liangyao ;
Liu, Xiaohui ;
Lu, Zhenghong .
PROCEEDINGS OF THE INSTITUTION OF MECHANICAL ENGINEERS PART D-JOURNAL OF AUTOMOBILE ENGINEERING, 2019, 233 (08) :1982-1999
[39]   Regenerative Braking Energy Storing Phenomena in Fuel Cell Based Electric Vehicle [J].
Chaturvedi, Lokesh ;
Yadav, D. K. ;
Pancholi, Gargi .
2017 RECENT DEVELOPMENTS IN CONTROL, AUTOMATION AND POWER ENGINEERING (RDCAPE), 2017, :482-486
[40]   Combined control of a regenerative braking and antilock braking system for hybrid electric vehicles [J].
D. Peng ;
Y. Zhang ;
C. -L. Yin ;
J. -W. Zhang .
International Journal of Automotive Technology, 2008, 9 :749-757