Hybrid control of an active suspension system with full-car model using H∞ and nonlinear adaptive control methods

被引:0
|
作者
Trong Hieu Bui
Jin Ho Suh
Sang Bong Kim
Tan Tien Nguyen
机构
[1] Pukyong National University San 100,Dept. of Mechanical Eng., College
[2] Hochiminh City University of Technology,Dept. of Mechanical Eng.
来源
关键词
Active Suspension; Full-Car Model; Hydraulic Actuator; H; Control Nonlinear Adaptive Control;
D O I
暂无
中图分类号
学科分类号
摘要
This paper presents hybrid control of an active suspension system with a full-car model by using H∞ and nonlinear adaptive control methods. The full-car model has seven degrees of freedom including heaving, pitching and rolling motions. In the active suspension system, the controller shows good performance: small gains from the road disturbances to the heaving, pitching and rolling accelerations of the car body. Also the controlled system must be robust to system parameter variations. As the control method, H∞ controller is designed so as to guarantee the robustness of a closed-loop system in the presence of uncertainties and disturbances. The system parameter variations are taken into account by multiplicative uncertainty model and the system robustness is guaranteed by small gain theorem. The active system with H∞ controller can reduce the accelerations of the car body in the heaving, pitching and rolling directons. The nonlinearity of a hydraulic actuator is handled by nonlinear adaptive control based on the back-stepping method. The effectiveness of the controllers is verified through simulation results in both frequency and time domains.
引用
收藏
页码:1613 / 1626
页数:13
相关论文
共 50 条
  • [1] Hybrid control of an active suspension system with full-car model using H∞ and nonlinear adaptive control methods
    Bui, TH
    Suh, JH
    Kim, SB
    Nguyen, TT
    [J]. KSME INTERNATIONAL JOURNAL, 2002, 16 (12): : 1613 - 1626
  • [2] NeuroFuzzy Adaptive Control for Full-Car Nonlinear Active Suspension with Onboard Antilock Braking System
    Shah Riaz
    Laiq Khan
    [J]. Arabian Journal for Science and Engineering, 2015, 40 : 3483 - 3505
  • [3] NeuroFuzzy Adaptive Control for Full-Car Nonlinear Active Suspension with Onboard Antilock Braking System
    Riaz, Shah
    Khan, Laiq
    [J]. ARABIAN JOURNAL FOR SCIENCE AND ENGINEERING, 2015, 40 (12) : 3483 - 3505
  • [4] Combined control effects of brake and active suspension control on the global safety of a full-car nonlinear model
    Tchamna, Rodrigue
    Youn, Edward
    Youn, Iljoong
    [J]. VEHICLE SYSTEM DYNAMICS, 2014, 52 : 69 - 91
  • [5] Global optimization control for nonlinear full-car active suspension system with multi-performances
    Chen, Chung-Cheng
    Chen, Yen-Ting
    [J]. IET CONTROL THEORY AND APPLICATIONS, 2021, 15 (14): : 1882 - 1905
  • [6] Robust finite-frequency H∞ control of full-car active suspension
    Jing, Hui
    Wang, Rongrong
    Li, Cong
    Bao, Jiading
    [J]. JOURNAL OF SOUND AND VIBRATION, 2019, 441 : 221 - 239
  • [7] EP-based fuzzy control design for an active suspension system with full-car model
    Cheng, Chia Ping
    Li, Tzuu-Hseng S.
    [J]. 2007 IEEE INTERNATIONAL CONFERENCE ON SYSTEMS, MAN AND CYBERNETICS, VOLS 1-8, 2007, : 498 - 503
  • [8] A hybrid control of active suspension system using H∞ and nonlinear adaptive controls
    Nguyen, TT
    Bui, TH
    Tran, TP
    Kim, SB
    [J]. ISIE 2001: IEEE INTERNATIONAL SYMPOSIUM ON INDUSTRIAL ELECTRONICS PROCEEDINGS, VOLS I-III, 2001, : 839 - 844
  • [9] Robust Full-Car Active Suspension System
    Al-Rawashdeh, Yazan M.
    El Ferik, Sami
    Abido, Mohammed A.
    [J]. 2019 10TH INTERNATIONAL CONFERENCE ON INFORMATION AND COMMUNICATION SYSTEMS (ICICS), 2019, : 205 - 210
  • [10] Hybrid Sliding Mode Control of Full-Car Semi-Active Suspension Systems
    Aljarbouh, Ayman
    Fayaz, Muhammad
    Qureshi, Muhammad Shuaib
    Boujoudar, Younes
    [J]. SYMMETRY-BASEL, 2021, 13 (12):