Design and evaluation of self-tuning optimal control for vibration suppression of magnetorheological semi-active suspension

Author:

Li Gang12,Gan Yu12,Liu Qianjie12ORCID,Xie Miaojin12,Huang Qingsheng123,Zeng Liping12

Affiliation:

1. Key Laboratory of Vehicle Intelligent Equipment and Control of Nanchang City, East China Jiaotong University, Nanchang, China

2. School of Mechatronics and Vehicle Engineering, East China Jiaotong University, Nanchang, China

3. Yingtan Applied Engineering School, Yingtan, China

Abstract

The objective of this paper is to enhance the vibration damping capabilities of magnetorheological (MR) semi-active suspension by utilizing a self-tuning LQG control method. Firstly, to determine the mechanical model of MR damper using the hyperbolic tangent model, mechanical experiments were performed with a damping force test machine under various input excitations. Experimental and simulation data were compared to confirm the accuracy of the mechanical model for MR damper. The MR damper is then incorporated into the vehicle’s semi-active suspension system to create a quarter-car suspension model. In order to tackle the problems associated with low control accuracy and poor dynamic adjustment in traditional LQG controllers where the weighting matrix coefficients are difficult to determine, a self-tuning LQG controller based on gravity search algorithm (GSA-LQG) was designed. Finally, the designed controller performance was evaluated by the simulation and experimental results obtained from the random and sinusoidal excitation roads. Experimental data reveal that when subjected to GSA-LQG control, the suspension control performance is considerably enhanced compared to the passive control, PID control and conventional LQG control suspension. Based on these outcome, it can be concluded that the proposed algorithm is effective and the experimental platform is feasible.

Funder

National Natural Science Foundation of China

Natural Science Foundation Project of Jiangxi Province

Double Height Project of Jiangxi Province Human Resources and Social Security Department in 2022

Jiangxi Graduate Student Innovation Special Fund Project

Key Program for International ST Cooperation Project of Jiangxi Province of China

Key RD project of Jiangxi Province of China

Publisher

SAGE Publications

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