Control of a shimmy vibration in vehicle steering system using a magneto-rheological damper

  • Dutta, Saikat
  • Choi, Seung-Bok
Citations

WEB OF SCIENCE

23
Citations

SCOPUS

28

초록

Vehicle stability largely depends on the vibration of the steering system. A four degrees of freedom dynamic model of an automotive steering system with a magneto-rheological damper is presented in this study. Firstly, an equivalent mathematical model of the steering system is developed. The nonlinear equation of motion obtained from the dynamic model is then linearized around its equilibrium point to make it suitable for the design of an appropriate controller for vibration suppression. In this work, a new type of adaptive sliding mode controller is designed for control of the magneto-rheological damper and hence to control unwanted vibration. It is shown that the proposed control logic is very effective for settling steering motion near the equilibrium position. The shimmy vibrations of the wheels are reduced by a considerable amount and the steering system becomes stable. In addition, a comparative work is undertaken between the proposed controller and an ordinary sliding mode controller to demonstrate the advantage of the proposed methodology.

키워드

Dynamic modeling of steeringwheel shimmyvibration controlmagneto-rheological (MR) fluidMR damperadaptive sliding mode controllerNEURAL-NETWORK CONTROLSEMIACTIVE CONTROLSUSPENSION SYSTEMMODELBIFURCATION
제목
Control of a shimmy vibration in vehicle steering system using a magneto-rheological damper
저자
Dutta, SaikatChoi, Seung-Bok
DOI
10.1177/1077546316652786
발행일
2018-02
유형
Article
저널명
JVC/Journal of Vibration and Control
24
4
페이지
797 ~ 807