In this paper, a rear-wheel-driven series hybrid electric vehicle which has a mechanically operated friction brake system is studied. A new cooperative control of regenerative braking and friction braking called ‘combined braking’ is proposed for this vehicle configuration. A mechanism to adjust the proportions of regenerative braking and friction braking was proposed in this paper. Further, the braking force distribution between the front wheels and the rear wheels was analysed to ensure stable braking. The brake system characteristics were considered to ensure that the driver’s feel remains the same in the new proposed combined braking strategy. The simulation results under urban driving and across the Modified Indian Driving Cycle and vehicle road testing results show that the proposed combined braking can regenerate more than twice the braking energy of conventional parallel braking. Also, with combined braking, the braking force distribution between the front wheels and the rear wheels is closer to the ideal braking force distribution curve, which is desirable to ensure stable braking.


    Access

    Check access

    Check availability in my library

    Order at Subito €


    Export, share and cite



    Title :

    Cooperative control of regenerative braking and friction braking for a hybrid electric vehicle


    Contributors:


    Publication date :

    2016-01-01


    Size :

    14 pages




    Type of media :

    Article (Journal)


    Type of material :

    Electronic Resource


    Language :

    English





    Cooperative control of regenerative braking and friction braking for a hybrid electric vehicle

    Kumar,C.N. / Subramanian,S.C. / Indian Inst.of Technology,IN | Automotive engineering | 2016


    Braking control method in regenerative braking cooperative control

    KIM IN SU / LEE SANG HYUP | European Patent Office | 2019

    Free access

    Braking Control Method in Regenerative Braking Cooperative Control

    KIM IN SU / LEE SANG HYUP | European Patent Office | 2018

    Free access

    EXTENDING HYBRID ELECTRIC VEHICLE REGENERATIVE BRAKING

    NEDOREZOV FELIX / JIANG HONG / DAI ZHENGYU et al. | European Patent Office | 2015

    Free access