GPS-based real-time identification of tire-road friction coefficient

被引:158
|
作者
Hahn, JO [1 ]
Rajamani, R [1 ]
Alexander, L [1 ]
机构
[1] Univ Minnesota, Dept Mech Engn, Minneapolis, MN 55455 USA
关键词
friction identification; global positioning system (GPS); parameter identification; tire-road friction; vehicle dynamics;
D O I
10.1109/87.998016
中图分类号
TP [自动化技术、计算机技术];
学科分类号
0812 ;
摘要
Vehicle control systems such as collision avoidance, adaptive cruise control, and automated lane-keeping systems as well as ABS and stability control systems can benefit significantly from being made "road-adaptive." The estimation of tire-road friction coefficient at the wheels allows the control algorithm in such systems to adapt to external driving conditions. This paper develops a new tire-road friction coefficient estimation algorithm based on measurements related to the lateral dynamics of the vehicle. A lateral tire force model parameterized as a function of slip angle, friction coefficient, normal force and cornering stiffness Is used. A real-time parameter identification algorithm that utilizes measurements from a differential global positioning system (DGPS) system and a gyroscope is used to identify the tire-road friction coefficient and cornering stiffness parameters of the tire. The advantage of the developed algorithm is that it does not require large longitudinal slip in order to provide reliable friction estimates. Simulation studies indicate that a parameter convergence rate of I s can be obtained. Experiments conducted on both dry and slippery road indicate that the algorithm can work very effectively in identifying a slippery road.
引用
收藏
页码:331 / 343
页数:13
相关论文
共 50 条
  • [41] Sliding-mode-based parameter identification with application to tire pressure and tire-road friction
    Lee, D. -J.
    Park, Y. -S.
    INTERNATIONAL JOURNAL OF AUTOMOTIVE TECHNOLOGY, 2011, 12 (04) : 571 - 577
  • [42] Iterative Estimation of the Tire-Road Friction Coefficient and Tire Stiffness of Each Driving Wheel
    Hsiao, Tesheng
    Yang, Je-Wei
    2016 AMERICAN CONTROL CONFERENCE (ACC), 2016, : 7573 - 7578
  • [43] Estimation of Tire-Road Friction Coefficient Using a Novel Wireless Piezoelectric Tire Sensor
    Erdogan, Gurkan
    Alexander, Lee
    Rajamani, Rajesh
    IEEE SENSORS JOURNAL, 2011, 11 (02) : 267 - 279
  • [44] Simultaneous estimation of vehicle sideslip angle and tire-road friction coefficient
    Yoshida, Momoko
    Yamashita, Yuh
    2013 PROCEEDINGS OF SICE ANNUAL CONFERENCE (SICE), 2013, : 1586 - 1591
  • [45] Nonlinear Observer for Vehicle Velocity and Tire-Road Friction Coefficient Estimation
    Peng, Ying
    Chen, Jian
    Yu, Jiangze
    Ma, Yan
    Zheng, Huarong
    2017 AMERICAN CONTROL CONFERENCE (ACC), 2017, : 2606 - 2611
  • [46] A Real-Time Maximum Tire-Road Friction Tracking Control Method for Aircraft Braking System With Disturbance Compensation
    Wang, Zhuangzhuang
    Liu, Xiaochao
    Sun, Dong
    Bai, Ning
    Qi, Pengyuan
    Jiao, Zongxia
    IEEE-ASME TRANSACTIONS ON MECHATRONICS, 2024, : 1 - 12
  • [47] Grid Search Based Tire-Road Friction Estimation
    Shao, Liang
    Jin, Chi
    Eichberger, Arno
    Lex, Cornelia
    IEEE ACCESS, 2020, 8 : 81506 - 81525
  • [48] Robust estimation of maximum tire-road friction coefficient considering road surface irregularity
    Han, K.
    Hwang, Y.
    Lee, E.
    Choi, S.
    INTERNATIONAL JOURNAL OF AUTOMOTIVE TECHNOLOGY, 2016, 17 (03) : 415 - 425
  • [49] Real-time Tire-road Longitudinal Adhesion Estimation Based on Exponential Sum Linear Parameterization
    Xiong Z.
    Guo X.
    Pei X.
    Zhang J.
    Zhongguo Jixie Gongcheng/China Mechanical Engineering, 2018, 29 (15): : 1826 - 1833
  • [50] Robust estimation of maximum tire-road friction coefficient considering road surface irregularity
    K. Han
    Y. Hwang
    E. Lee
    S. Choi
    International Journal of Automotive Technology, 2016, 17 : 415 - 425