Online Adaptive Neuro-Fuzzy Based Full Car Suspension Control Strategy

Author:

Khan Laiq1,Qamar Shahid1

Affiliation:

1. COMSATS Institute of Information Technology, Pakistan

Abstract

Suspension system of a vehicle is used to minimize the effect of different road disturbances for ride comfort and improvement of vehicle control. A passive suspension system responds only to the deflection of the strut. The main objective of this work is to design an efficient active suspension control for a full car model with 8-Degrees Of Freedom (DOF) using adaptive soft-computing technique. So, in this study, an Adaptive Neuro-Fuzzy based Sliding Mode Control (ANFSMC) strategy is used for full car active suspension control to improve the ride comfort and vehicle stability. The detailed mathematical model of ANFSMC has been developed and successfully applied to a full car model. The robustness of the presented ANFSMC has been proved on the basis of different performance indices. The analysis of MATLAB/SMULINK based simulation results reveals that the proposed ANFSMC has better ride comfort and vehicle handling as compared to Adaptive PID (APID), Adaptive Mamdani Fuzzy Logic (AMFL), passive, and semi-active suspension systems. The performance of the active suspension has been optimized in terms of displacement of seat, heave, pitch, and roll.

Publisher

IGI Global

Reference79 articles.

1. Abbas, Asghar, & Qamar. (2012). Sliding mode control for coupled-tank liquid level control system. In Proceedings of 10th International Conference on Frontiers of Information Technology. Pakistan: IEEE Press.

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3. Alleyne, A., & Hedrick, J. K. (2009). Nonlinear control of a quarter car active suspension. American Control Conference, 21-25.

4. Application of nonlinear control theory to electronically controlled suspensions.;A.Alleyne;Vehicle System Dynamics,1997

5. Nonlinear adaptive control of active suspensions

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