Shaking table tests on Semi-active base-isolation system by Magnetorheological Fluid damper

被引:1
|
作者
Hiwatashi, T [1 ]
Shiozaki, Y [1 ]
Fujitani, H [1 ]
Minowa, C [1 ]
Soda, S [1 ]
机构
[1] TOA Corp, Yokohama, Kanagawa 2300035, Japan
关键词
MR damper; Bingham visco-plastic model; base-isolated structure; optimal regulator theory; semi-active control; shaking table tests;
D O I
10.1117/12.483452
中图分类号
TH [机械、仪表工业];
学科分类号
0802 ;
摘要
Recent study is to the performance of variable dampers for reducing earthquake response of buildings or wind induced sway. The variable damper using magnetorheological fluid (MR damper) changes its damping force by changing the magnetic field acting on the MR fluid according to. an electric current. MR dampers have a simple mechanism and don't need a large amount of energy. Semi-active control using such a. variable damper stabilizes building responses in an earthquake better than the conventional passive control. Basic characteristics of the MR damper have been clarified. This time, authors proposed control algorithm of base-isolated structure, which carried out semi-active control by optimal regulator theory. This control algorithm reduces response displacement and response acceleration for the purpose of, and aims at enhancements, such as safety and amenity. This paper presents a comprehensive study on the performance of the MR damper to base-isolated structure. It's describes shaking table tests on a three-story large-scale test frame with base-isolated structure. The test results verify the controlling system and the control effect as a semi-active device of the MR damper.
引用
收藏
页码:400 / 411
页数:12
相关论文
共 50 条
  • [1] Sliding mode control of base-isolation system using semi-active hydraulic damper
    Nagashima, Ichiro
    Shinozaki, Yozo
    Maseki, Ryota
    Sanui, Yoichi
    Kitagawa, Yoshikazu
    [J]. Journal of Structural and Construction Engineering, 2010, 75 (649): : 511 - 519
  • [2] Digital control for semi-active isolation system with magnetorheological damper
    Pan, Cunzhi
    Yang, Shaopu
    [J]. ICICIC 2006: FIRST INTERNATIONAL CONFERENCE ON INNOVATIVE COMPUTING, INFORMATION AND CONTROL, VOL 1, PROCEEDINGS, 2006, : 682 - +
  • [3] Semi-active neuro-control for base-isolation system using magnetorheological (MR) dampers
    Bani-Hani, Khaldoon A.
    Sheban, Mashal A.
    [J]. EARTHQUAKE ENGINEERING & STRUCTURAL DYNAMICS, 2006, 35 (09): : 1119 - 1144
  • [4] Simulation study of the Magnetorheological fluid damper in the semi-active suspension system
    Wang Jianfeng
    Song Chuanxue
    [J]. 2012 WORLD AUTOMATION CONGRESS (WAC), 2012,
  • [5] Semi-active vibration isolation design using magnetorheological damper
    Gordon, S.
    Christenson, R.
    Tang, J.
    [J]. ACTIVE AND PASSIVE SMART STRUCTURES AND INTEGRATED SYSTEMS XVIII, 2024, 12946
  • [6] Hybrid base-isolation with magnetorheological damper and fuzzy control
    Lin, P. Y.
    Roschke, P. N.
    Loh, C. H.
    [J]. STRUCTURAL CONTROL & HEALTH MONITORING, 2007, 14 (03): : 384 - 405
  • [7] A semi-active control system in coupled buildings with base-isolation and magnetorheological dampers using an adaptive neuro-fuzzy inference system
    Tai, Wei Chun
    Ikenaga, Masahiro
    [J]. FRONTIERS IN BUILT ENVIRONMENT, 2022, 8
  • [8] Two semi-active approaches for vibration isolation: Piezoelectric friction damper and magnetorheological damper
    Unsal, M
    Niezrecki, C
    Crane, C
    [J]. ICM '04: PROCEEDINGS OF THE IEEE INTERNATIONAL CONFERENCE ON MECHATRONICS 2004, 2004, : 60 - 65
  • [9] Semi-active control of magnetorheological damper system: A Lyapunov design
    Yim, W
    Singh, SN
    Minnicino, MA
    [J]. SMART STRUCTURES AND MATERIALS 2004: MODELING, SIGNAL PROCESSING, AND CONTROL, 2004, 5383 : 289 - 297
  • [10] Modeling and semi-active predictive control of a magnetorheological fluid shock isolation system
    Maganti, GB
    Subramaniam, V
    Singh, SN
    Yim, W
    [J]. Smart Structures and Materials 2005: Damping and Isolation, 2005, 5760 : 596 - 606