Author:
Ma Teng,Li Tiejun,Jing Guoxi,Liu Hai,Bi Fengrong
Abstract
To alleviate the impact and vibrations to a driver in multiple directions during the driving of non-road vehicles, the authors of this paper proposed a multi-degree-of-freedom (MDOF) seat damping suspension that was based on the cubic Stewart mechanism and magnetorheological fluid (MRF) damper. A kinematics analysis of the cubic Stewart mechanism was carried out. The relative motion velocity of each leg of the Stewart mechanism was calculated from the center velocity of the upper and lower platforms, according to a reverse kinematics equation. Furthermore, forward and inverse dynamic models of the MRF damper were established, which laid the foundation for semi-active control of the seat suspension. Finally, a semi-active control method for multidimensional damping based on the optimized fuzzy skyhook control method was proposed. The research results showed that using this method could simultaneously improve the vibration damping performance of a seat suspension in the vertical, horizontal, and roll directions.
Subject
Fluid Flow and Transfer Processes,Computer Science Applications,Process Chemistry and Technology,General Engineering,Instrumentation,General Materials Science
Reference27 articles.
1. Reduction of low frequency vibration of truck driver and seating system through system parameter identification, sensitivity analysis and active control;Mech. Syst. Signal Process.,2018
2. Semi-active control using magnetorheological dampers for payload launch vibration isolation;Smart Structures and Materials 2006: Damping and Isolation,2006
3. A semi-active vehicle suspension based on pneumatic springs and magnetorheological dampers;J. Vib. Control JVC,2018
4. Phu, D., Mien, V., and Choi, S.B. (2021). A New Switching Adaptive Fuzzy Controller with an Application to Vibration Control of a Vehicle Seat Suspension Subjected to Disturbances. Appl. Sci., 11.
5. Investigation of a seat suspension installed with compact variable stiffness and damping rotary magnetorheological dampers;Mech. Syst. Signal Process.,2022
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