Active geometry control suspension system for the enhancement of vehicle stability

被引:14
|
作者
Lee, U. K. [1 ]
Lee, S. H. [1 ]
Han, C. S. [2 ]
Hedrick, K. [3 ]
Catala, A. [4 ]
机构
[1] Hyundai Motor Co, Div Res & Dev, Hwaseong Si 445706, Gyeonggi Do, South Korea
[2] Hanyang Univ, Dept Mech Engn, Seoul 133791, South Korea
[3] Univ Calif Berkeley, Dept Mech Engn, Berkeley, CA 94720 USA
[4] Applus IDIADA Automot Technol, Santa Oliva, Spain
关键词
active toe control; handling performance; stability; road objective evaluation methods; kinematics and compliance testing; dynamic wheel position measurement;
D O I
10.1243/09544070JAUTO693
中图分类号
TH [机械、仪表工业];
学科分类号
0802 ;
摘要
The active control of suspension geometry has. historically been a challenging perspective for chassis teams of worldwide automakers. Manufacturers and suppliers have offered different solutions, but few have succeeded in combining a marked improvement in handling performance, low-energy consumption, simplicity, and low cost. The new and revolutionary approach of an active geometry control suspension (AGCS) reinvents the possibilities of rear-suspension active toe control. This system employs the use of the complexity of a rear multi-link suspension, and a clever design layout to minimize the energy use. Additionally, because of an efficient control logic strategy, the vehicle-handling performance and stability are substantially improved. The system is the most successful in controlling vehicle transient situations initiated mainly by aggressive lane-change manoeuvres at medium to high speeds. This paper presents the most relevant actions of the development process of the AGCS. The use of different evaluation methods and accurate measurement equipment was crucial for optimization of the system. The methods presented combine subjective evaluations in different road conditions (icy, wet, and dry asphalt), suspension kinematics and elastokinematics characterization, and objective road measurements using dynamic wheel position measurement equipment. Finally, a comprehensive summary of the handling-test results are explained, which outline the efficiency of the system, and its influence on the active safety level of the vehicle.
引用
收藏
页码:979 / 988
页数:10
相关论文
共 50 条
  • [1] Enhancement of vehicle stability by active geometry control suspension system
    Lee, S. H.
    Sung, H.
    Kim, J. W.
    Lee, U. K.
    INTERNATIONAL JOURNAL OF AUTOMOTIVE TECHNOLOGY, 2006, 7 (03) : 303 - 307
  • [2] Enhancement of Vehicle Stability Based on Variable Geometry Suspension and Robust LPV Control
    Nemeth, Balazs
    Gaspar, Peter
    2011 IEEE/ASME INTERNATIONAL CONFERENCE ON ADVANCED INTELLIGENT MECHATRONICS (AIM), 2011, : 253 - 258
  • [3] Integration of Control Design and Variable Geometry Suspension Construction for Vehicle Stability Enhancement
    Nemeth, Balazs
    Gaspar, Peter
    2011 50TH IEEE CONFERENCE ON DECISION AND CONTROL AND EUROPEAN CONTROL CONFERENCE (CDC-ECC), 2011, : 7452 - 7457
  • [4] STABILITY ANALYSIS OF AN ACTIVE VEHICLE SUSPENSION SYSTEM
    Wanichanon, Thanapat
    Thidrasamee, Chayada
    Pornrattanaprasert, Thana
    Mahachotikul, Palita
    INTERNATIONAL JOURNAL OF GEOMATE, 2020, 19 (76): : 110 - 117
  • [5] An Adaptive Semi-Active Suspension System for Design of Vehicle Stability Control System
    Lin, Yu-Chen
    Sun, Chien-Wen
    Lyu, Bo-Han
    Yeh, Ting-Jia
    2023 IEEE 26TH INTERNATIONAL CONFERENCE ON INTELLIGENT TRANSPORTATION SYSTEMS, ITSC, 2023, : 1801 - 1805
  • [6] Vehicle motion stability enhancement based on active camber angle control for a double wishbone suspension
    El-Zomor H.M.
    Mohamed E.S.
    International Journal of Vehicle Structures and Systems, 2020, 12 (02): : 134 - 139
  • [7] Error analysis for an active geometry control suspension system
    Fernando Malvezzi
    Tarcisio Antonio Hess Coelho
    Journal of the Brazilian Society of Mechanical Sciences and Engineering, 2018, 40
  • [8] Error analysis for an active geometry control suspension system
    Malvezzi, Fernando
    Hess Coelho, Tarcisio Antonio
    JOURNAL OF THE BRAZILIAN SOCIETY OF MECHANICAL SCIENCES AND ENGINEERING, 2018, 40 (12)
  • [9] Modelling and control of a full vehicle active suspension system
    Sibielak, Marek
    Raczka, Waldemar
    Konieczny, Jaroslaw
    2019 20TH INTERNATIONAL CARPATHIAN CONTROL CONFERENCE (ICCC), 2019, : 669 - 674
  • [10] Modeling and Intelligent Control of Vehicle Active Suspension System
    Sun, Jianmin
    Yang, Qingmei
    2008 IEEE CONFERENCE ON ROBOTICS, AUTOMATION, AND MECHATRONICS, VOLS 1 AND 2, 2008, : 292 - +