COOPERATIVE REGENERATIVE BRAKING CONTROL FOR FRONT-WHEEL-DRIVE HYBRID ELECTRIC VEHICLE BASED ON ADAPTIVE REGENERATIVE BRAKE TORQUE OPTIMIZATION USING UNDER-STEER INDEX

被引:27
|
作者
Han, J. [1 ]
Park, Y. [1 ]
Park, Y. [1 ]
机构
[1] Korea Adv Inst Sci & Technol, Dept Mech Engn, Taejon 305701, South Korea
基金
新加坡国家研究基金会;
关键词
Cooperative regenerative braking control; Front-wheel-drive hybrid electric vehicle; Vehicle lateral stability; Adaptive regenerative brake torque optimization;
D O I
10.1007/s12239-014-0104-9
中图分类号
TH [机械、仪表工业];
学科分类号
0802 ;
摘要
In this study, cooperative regenerative braking control of front-wheel-drive hybrid electric vehicle is proposed to recover optimal braking energy while guaranteeing the vehicle lateral stability. In front-wheel-drive hybrid electric vehicle, excessive regenerative braking for recuperation of the maximum braking energy can cause under-steer problem. This is due to the fact that the resultant lateral force on front tire saturates and starts to decrease. Therefore, cost function with constraints is newly defined to determine optimum distribution of brake torques including the regenerative brake torque for improving the braking energy recovery as well as the vehicle lateral stability. This cost function includes trade-off relation of two objectives. The physical meaning of first objective of cost function is to maximize the regenerative brake torque for improving the fuel economy and that of second objective is to increase the mechanical-friction brake torques at rear wheels rather than regenerative brake torque at front wheels for preventing front tire saturation. And weighting factor in cost function is also proposed as a function of under-steer index representing current state of the vehicle lateral motion in order to generalize the constrained optimization problem including both normal and severe cornering situation. For example, as the vehicle approaches its handling limits, adaptation of weighting factor is possible to prioritize front tire saturation over increasing the recuperation of braking energy for driver safety and vehicle lateral stability. Finally, computer simulation of closed loop driver-vehicle system based on Carsim (TM) performed to verify the effectiveness of adaptation method in proposed controller and the vehicle performance of the proposed controller in comparison with the conventional controller for only considering the vehicle lateral stability. Simulation results indicate that the proposed controller improved the performance of braking energy recovery as well as guaranteed the vehicle lateral stability similar to the conventional controller.
引用
收藏
页码:989 / 1000
页数:12
相关论文
共 50 条
  • [31] Instantaneous optimal regenerative braking control for a permanent-magnet synchronous motor in a four-wheel-drive electric vehicle
    Lu, Dongbin
    Ouyang, Minggao
    Gu, Jing
    Li, Jianqiu
    PROCEEDINGS OF THE INSTITUTION OF MECHANICAL ENGINEERS PART D-JOURNAL OF AUTOMOBILE ENGINEERING, 2014, 228 (08) : 894 - 908
  • [32] Regenerative Braking Control Strategy for Electric Vehicles Based on Optimization of Switched Reluctance Generator Drive System
    Zhu, Yueying
    Wu, Hao
    Zhang, Junxia
    IEEE ACCESS, 2020, 8 : 76671 - 76682
  • [33] Fuzzy control of a hybrid power source for fuel cell electric vehicle using regenerative braking ultracapacitor
    Amirabadi, Mahshid
    Farhangi, Shahrokh
    2006 12TH INTERNATIONAL POWER ELECTRONICS AND MOTION CONTROL CONFERENCE, VOLS 1-4, 2006, : 2061 - +
  • [34] Coordinated pressure control of a regenerative braking system based on a hybrid electric vehicle with an integrated startor and generator
    Yang, Yang
    Yang, Wen-Hui
    Yang, Ya-Lian
    Qin, Da-Tong
    Chongqing Daxue Xuebao/Journal of Chongqing University, 2009, 32 (05): : 493 - 498
  • [35] Regenerative Braking in Electric Vehicles using BLDC motor with Modified Torque and Adaptive-Neuro-Fuzzy-Control
    Begam, Shaik Ruksana
    Burthi, Loveswara Rao
    Depuru, Shobha Rani
    PRZEGLAD ELEKTROTECHNICZNY, 2024, 100 (03): : 184 - 190
  • [36] Regenerative brake control using adaptive parameter estimation for a series-parallel hybrid electric bus
    Shu Jie
    Zhang Yong
    Yin Chengliang
    INTERNATIONAL JOURNAL OF VEHICLE DESIGN, 2010, 54 (01) : 35 - 46
  • [37] Adaptive regenerative braking for electric vehicles with an electric motor at the front axle using the state dependent riccati equation control technique
    Jansen, Sven
    Alirezaei, Mohsen
    Kanarachos, Stratis
    WSEAS Transactions on Systems and Control, 2014, 9 (01): : 424 - 437
  • [38] Regenerative Braking Control with Gear Downshifting for Energy Efficiency and Motion Stability Improvement of an Electrical-four-wheel-drive Hybrid Vehicle
    Li, Chunming
    Shuai, Zhibin
    Gai, Jiangtao
    Zhou, Guangming
    Li, Yaoheng
    Liu, Chunsheng
    2020 IEEE 92ND VEHICULAR TECHNOLOGY CONFERENCE (VTC2020-FALL), 2020,
  • [39] Research on the Coordinated Control of Regenerative Braking System and ABS in Hybrid Electric Vehicle Based on Composite Structure Motor
    Xu, Qiwei
    Zhou, Chuan
    Huang, Hong
    Zhang, Xuefeng
    ELECTRONICS, 2021, 10 (03) : 1 - 19
  • [40] RESEARCH ON DESIGN OPTIMIZATION AND SIMULATION OF REGENERATIVE BRAKING CONTROL STRATEGY FOR PURE ELECTRIC VEHICLE BASED ON EMB SYSTEMS
    Zhou, Shuwen
    Liu, Jinshuang
    Wang, Zhaolun
    Sun, Shaohua
    TRANSACTIONS OF FAMENA, 2023, 47 (04) : 33 - 49