Model reference control of a magneto-rheological damper using neural networks

被引:0
|
作者
Song, G [1 ]
Chaudhry, V [1 ]
Batur, C [1 ]
机构
[1] Univ Akron, Dept Mech Engn, Akron, OH 44325 USA
来源
PROCEEDINGS OF THE 5TH ASIA-PACIFIC CONFERENCE ON CONTROL & MEASUREMENT | 2002年
关键词
D O I
暂无
中图分类号
TP [自动化技术、计算机技术];
学科分类号
0812 ;
摘要
By actively adjusting its magnetic field strength via control voltage, an MR damper can generate damping forces in a desired fashion, for example, behaving like a Coulomb friction damper. The hysteresis in magneto-rheological damper needs to be compensated in order to make its control more accurate. This paper presents a new approach to control of MR damper using model reference control and neural networks. A modified Bouc-Wen model of the hysteresis in an MR damper is used to generate training data for the forward neural network model of the hysteresis. Upon successfully training of the neural network model, neural network controllers are designed to control the MR damper so its output force follows a reference model without hysteresis. Using this model reference control and neural networks approach, piecewise linear relationship between damping force and applied voltage is achieved and this piecewise linear relationship greatly simplifies the control of an MR damper.
引用
收藏
页码:202 / 207
页数:6
相关论文
共 50 条
  • [31] Parameter uncertainty analysis of MNS model for Magneto-Rheological damper
    Peng C.-L.
    Chen C.
    Hou H.-T.
    Chen, Cheng (chcsdu@gmail.com), 1600, Tsinghua University (37): : 175 - 182
  • [32] Modelling of a magneto-rheological damper by evolving radial basis function networks
    Du, Haiping
    Lam, James
    Zhang, Nong
    ENGINEERING APPLICATIONS OF ARTIFICIAL INTELLIGENCE, 2006, 19 (08) : 869 - 881
  • [33] Modeling of a magneto-rheological (MR) damper using genetic programming
    Singru, Pravin
    Raizada, Ayush
    Krishnakumar, Vishnuvardhan
    Garg, Akhil
    Tai, K.
    Raj, Varun
    JOURNAL OF VIBROENGINEERING, 2017, 19 (05) : 3169 - 3177
  • [34] Study on operational temperature of magneto-rheological fluid and design dimensions of magneto-rheological damper for optimization
    Kariganaur, Ashok Kumar
    Kumar, Hemantha
    Arun, M.
    ENGINEERING RESEARCH EXPRESS, 2024, 6 (02):
  • [35] A SHEAR MODE MAGNETO-RHEOLOGICAL DAMPER USING PERMANENT MAGET
    Ho, Kim Wan
    Suresh, Kaluvan
    Ha, Park Jhin
    Seung-Bok, Choi
    PROCEEDINGS OF THE 23RD INTERNATIONAL CONGRESS ON SOUND AND VIBRATION: FROM ANCIENT TO MODERN ACOUSTICS, 2016,
  • [36] Semi-active control of a landing gear system using magneto-rheological damper
    Nam, Y. J.
    Park, M. K.
    Choi, J. W.
    Yamane, R.
    ICMIT 2007: MECHATRONICS, MEMS, AND SMART MATERIALS, PTS 1 AND 2, 2008, 6794
  • [37] Research on Semi-active Suspension Vibration Control Using Magneto-Rheological Damper
    Shao, Haidong
    Jiang, Hongkai
    PROCEEDINGS OF THE FIRST SYMPOSIUM ON AVIATION MAINTENANCE AND MANAGEMENT-VOL II, 2014, 297 : 441 - 447
  • [38] Design and study on pneumatic magneto-rheological damper
    Tian, L
    Wang, YY
    Electrorheological Fluids and Magnetorheological Suspensions (ERMR 2004), Proceedings, 2005, : 762 - 768
  • [39] Mechatronic Design of Magneto-Rheological Damper for Automobiles
    Gohil, Ghanshyam Singh
    Srivastava, Rajeev
    2013 STUDENTS CONFERENCE ON ENGINEERING AND SYSTEMS (SCES): INSPIRING ENGINEERING AND SYSTEMS FOR SUSTAINABLE DEVELOPMENT, 2013,
  • [40] Temperature dependent skyhook control of HMMWV suspension using a failsafe magneto-rheological damper
    Liu, YM
    Gordaninejad, F
    Evrensel, CA
    Dogruer, U
    Yeo, MS
    Karakas, ES
    Fuchs, A
    SMART STRUCTURES AND MATERIALS 2003: INDUSTRIAL AND COMMERCIAL APPLICATIONS OF SMART STRUCTURES TECHNOLOGIES, 2003, 5054 : 332 - 340