Real-time identification of tire-road friction conditions

被引:85
|
作者
Tanelli, M. [1 ,2 ]
Piroddi, L. [1 ]
Savaresi, S. M. [1 ]
机构
[1] Politecn Milan, Dipartimento Elett & Informaz, I-20133 Milan, Italy
[2] Univ Bergamo, Dipartimento Ingn Informaz & Metodi Matemat, I-24044 Dalmine, BG, Italy
来源
IET CONTROL THEORY AND APPLICATIONS | 2009年 / 3卷 / 07期
关键词
EMERGENCY BRAKING CONTROL; FORCE ESTIMATION; COEFFICIENT; FREQUENCY; VELOCITY; SYSTEMS;
D O I
10.1049/iet-cta.2008.0287
中图分类号
TP [自动化技术、计算机技术];
学科分类号
0812 ;
摘要
Tire-road friction characteristics are deeply interlaced with all vehicle dynamics control systems, as road conditions strongly affect the control schemes behaviour. This work aims at the real-time estimation of the wheel slip value corresponding to the peak of the tire-road friction curve, in order to provide anti-lock braking systems (ABS) with reliable information on its value upon activation. Different techniques based on recursive least squares and the maximum likelihood approach are used for friction curve fitting and their merits and drawbacks thoroughly examined. In addition, since one of the main issues in slip-based friction estimation during braking is vehicle speed estimation, an effective algorithm for addressing this task is developed. The proposed peak slip value estimation strategy is analysed and tested both in simulation and on data collected on an instrumented test vehicle. In the latter case, the vehicle speed estimation algorithm is used, and the estimated vehicle speed provided as input for friction estimation. Practical applicability constraints posed by typical ABS systems are also considered.
引用
收藏
页码:891 / 906
页数:16
相关论文
共 50 条
  • [1] Real-time identification of tire-road friction conditions
    Tanelli, Mara
    Piroddi, Luigi
    Piuri, Marco
    Savaresi, Sergio M.
    2008 IEEE INTERNATIONAL CONFERENCE ON CONTROL APPLICATIONS, VOLS 1 AND 2, 2008, : 194 - 199
  • [2] Wheel Slip Estimation Based on Real-Time Identification of Tire-Road Friction Conditions
    Chen, Changfang
    Jia, Yingmin
    Matsuno, Fumitoshi
    2013 AMERICAN CONTROL CONFERENCE (ACC), 2013, : 2815 - 2820
  • [3] GPS-based real-time identification of tire-road friction coefficient
    Hahn, JO
    Rajamani, R
    Alexander, L
    IEEE TRANSACTIONS ON CONTROL SYSTEMS TECHNOLOGY, 2002, 10 (03) : 331 - 343
  • [4] Development of Identification of Tire-road Friction Conditions
    Lian, Yufeng
    Tian, Yantao
    Hu, Leilei
    Yin, Cheng
    2012 12TH INTERNATIONAL CONFERENCE ON CONTROL, AUTOMATION, ROBOTICS & VISION (ICARCV), 2012, : 1812 - 1817
  • [5] Real-time estimation of vehicle state and tire-road friction forces
    Samadi, B
    Kazemi, R
    Nikravesh, KY
    Kabganian, M
    PROCEEDINGS OF THE 2001 AMERICAN CONTROL CONFERENCE, VOLS 1-6, 2001, : 3318 - 3323
  • [6] Linearized Recursive Least Squares Methods for Real-Time Identification of Tire-Road Friction Coefficient
    Choi, Mooryong
    Oh, Jiwon J.
    Choi, Seibum B.
    IEEE TRANSACTIONS ON VEHICULAR TECHNOLOGY, 2013, 62 (07) : 2906 - 2918
  • [7] Algorithms for Real-Time Estimation of Individual Wheel Tire-Road Friction Coefficients
    Rajamani, Rajesh
    Phanomchoeng, Gridsada
    Piyabongkarn, Damrongrit
    Lew, Jae Y.
    IEEE-ASME TRANSACTIONS ON MECHATRONICS, 2012, 17 (06) : 1183 - 1195
  • [8] Algorithms for real-time estimation of individual wheel tire-road friction coefficients
    Rajamani, Rajesh
    Piyabongkarn, Damrongrit
    Lew, Jae Y.
    Grogg, John A.
    2006 AMERICAN CONTROL CONFERENCE, VOLS 1-12, 2006, 1-12 : 4682 - +
  • [9] Real-time estimation of tire-road friction coefficient based on lateral vehicle dynamics
    Hu, Juqi
    Rakheja, Subhash
    Zhang, Youmin
    PROCEEDINGS OF THE INSTITUTION OF MECHANICAL ENGINEERS PART D-JOURNAL OF AUTOMOBILE ENGINEERING, 2020, 234 (10-11) : 2444 - 2457
  • [10] Real-Time Estimation of Tire-Road Friction Coefficient Based on Unscented Kalman Filtering
    Lin, Xuewu
    Wang, Jianqiang
    Xu, Qing
    Shi, Gaolei
    Jin, Yitao
    2020 IEEE 5TH INTERNATIONAL CONFERENCE ON INTELLIGENT TRANSPORTATION ENGINEERING (IEEE ICITE 2020), 2020, : 376 - 382