DocumentCode :
1882589
Title :
Design and Control Principles of Hybrid Braking System for EV, HEV and FCV
Author :
Gao, Yimin ; Chu, Liang ; Ehsani, Mehrdad
fYear :
2007
fDate :
9-12 Sept. 2007
Firstpage :
384
Lastpage :
391
Abstract :
Due to the introduction of electrical regenerative braking, the structure, design and control of braking system of an electric vehicle (EV), hybrid electrical vehicle (HEV) and fuel cell vehicle (FCV) is quite different from the pure mechanical braking system of conventional vehicles. Desirable braking performance not only guarantee to quickly stop the vehicle and maintain the traveling direction stable and controllable, but recapture the braking energy as much as possible on various conditions of road. In this paper, the braking energy characteristics on vehicle speed and braking power in typical urban driving cycles have been investigated. The results provide strong supports to the design and control of such hybrid braking system. Two hybrid braking systems have been introduced. One is parallel hybrid braking system, which has a simple structure and control. The other is fully controllable hybrid braking system. Two typical control strategies for this system have been established. One emphasizes optimal braking performance and the other on optimal braking energy recovery.
Keywords :
braking; design engineering; fuel cell vehicles; hybrid electric vehicles; velocity control; electric vehicle; electrical regenerative braking; fuel cell vehicle; hybrid electrical vehicle; mechanical braking system; parallel hybrid braking system; Control systems; Force control; Fuel cell vehicles; Hybrid electric vehicles; Optimal control; Power system modeling; Road vehicles; Vehicle driving; Vehicle safety; Wheels; Braking energy; Control; Design Principle; EV; FCV; HEV; Hybrid brake system; Regenerative braking;
fLanguage :
English
Publisher :
ieee
Conference_Titel :
Vehicle Power and Propulsion Conference, 2007. VPPC 2007. IEEE
Conference_Location :
Arlington, TX
Print_ISBN :
978-0-7803-9760-6
Electronic_ISBN :
978-0-7803-9761-3
Type :
conf
DOI :
10.1109/VPPC.2007.4544157
Filename :
4544157
Link To Document :
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