Research on skid control of small electric vehicle (effect of regenerative braking system in skidding condition)

被引:0
|
作者
Ogino H. [1 ]
Kobayashi S. [1 ]
Hasegawa S. [1 ]
机构
[1] Tokai Unive., Dept. of Mechanical Engineering, Hiratsuka-shi, Kanagawa, 259-1292
关键词
Active safety; Automobile; Hybrid brake system; Regenerative brake; Small electric vehicle;
D O I
10.1299/kikaic.77.4605
中图分类号
学科分类号
摘要
In recent years, electric vehicles have come to be widely used. Most of small electric vehicles only provide seat belts as safety equipment., the vehicle using In-wheel motor system as driving unit in particular have no space for an antilock braking system, which is a basic skid control system. For the same reason, small electric vehicles using In-wheel motor system employ a mechanical braking system rather than a hydraulic braking system. Although the mechanical system is compact, the stiffness of the system is smaller than that of the hydraulic braking system, and the responsiveness of the braking force of the mechanical system is low. Therefore, small electric vehicles may be considered that they lack driving safety. The purpose of the present study is to improve the safety of small electric vehicles. In this report, the effects of regenerative brake and Anti-lock brake system for braking performance were examined. A hybrid simulation model comprising velocity and the pressure of the brake fluid in the brake piping by the characteristic curve method was constructed for the hydraulic and mechanical systems. The braking pressure of the braking unit, which includes the antilock braking unit modeled by the lumped constant model, was controlled to compensate for the small stiffness value of the mechanical braking system. © 2011 The Japan Society of Mechanical Engineers.
引用
收藏
页码:4605 / 4618
页数:13
相关论文
共 50 条
  • [1] Skid Control of Small Electric Vehicle (Effect of the Regenerative Braking Force to the Hysteresis of Friction Brake Force)
    Peeie, Mohamad Heerwan
    Ogino, Hirohiko
    Oshinoya, Yasuo
    2013 IEEE CONFERENCE ON SYSTEMS, PROCESS & CONTROL (ICSPC), 2013, : 46 - 51
  • [2] Research on control for regenerative braking of electric vehicle
    Cao, BG
    Bai, ZF
    Zhang, W
    2005 IEEE International Conference on Vehicular Electronics and Safety Proceedings, 2005, : 92 - 97
  • [3] Research of Pneumatic Braking Force Control on Regenerative Braking Electric Vehicle
    Wang Jun
    GaoShuai
    Zhang XingShuo
    2014 IEEE TRANSPORTATION ELECTRIFICATION CONFERENCE AND EXPO (ITEC) ASIA-PACIFIC 2014, 2014,
  • [4] Research of Electric Vehicle Regenerative Braking Control Strategy Based on EHB System
    Zheng, Hongyu
    He, Rong
    Zong, Changfu
    APPLIED ENERGY TECHNOLOGY, PTS 1 AND 2, 2013, 724-725 : 1436 - 1439
  • [5] Safety Ensurence Research on the Regenerative Braking System of Electric Vehicle
    Zhang, Zijian
    Dong, Yangyang
    INTERNATIONAL JOURNAL OF PATTERN RECOGNITION AND ARTIFICIAL INTELLIGENCE, 2019, 33 (04)
  • [6] Research of the Regenerative Braking and Energy Recovery System For Electric Vehicle
    Zhang Guirong
    2012 WORLD AUTOMATION CONGRESS (WAC), 2012,
  • [7] Fuzzy Logic Control in Regenerative Braking System for Electric Vehicle
    Zhang, Hao
    Xu, Guoqing
    Li, Weimin
    Zhou, Meilan
    PROCEEDING OF THE IEEE INTERNATIONAL CONFERENCE ON INFORMATION AND AUTOMATION, 2012, : 588 - 591
  • [8] An improved parallel regenerative braking system for small battery electric vehicle
    Mondal, Sutapa
    Nandi, Arup Kumar
    WORLD JOURNAL OF ENGINEERING, 2023, 20 (06) : 1112 - 1127
  • [9] Simulation Research on Regenerative Braking Control Strategy of Hybrid Electric Vehicle
    Geng, Cong
    Ning, Dawen
    Guo, Linfu
    Xue, Qicheng
    Mei, Shujian
    ENERGIES, 2021, 14 (08)
  • [10] Research and Implementation on Control Strategy of Regenerative Braking for Pure Electric Vehicle
    Lv Hongping
    2012 INTERNATIONAL CONFERENCE ON MECHANICAL AND ELECTRONICS ENGINEERING, 2012, 3 : 121 - 125