4.5 Article

Semi-active control of tracked vehicle suspension incorporating magnetorheological dampers

Journal

VEHICLE SYSTEM DYNAMICS
Volume 55, Issue 5, Pages 626-647

Publisher

TAYLOR & FRANCIS LTD
DOI: 10.1080/00423114.2016.1273531

Keywords

Semi-active control; tracked vehicle suspension; magnetorheological damper; skyhook control; hybrid control; fuzzy-hybrid control; ride comfort and road-holding characteristics

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In past years, the application of magnetorheological (MR) and electrorheological dampers in vehicle suspension has been widely studied, mainly for the purpose of vibration control. This paper presents theoretical study to identify an appropriate semi-active control method for MR-tracked vehicle suspension. Three representative control algorithms are simulated including the skyhook, hybrid and fuzzy-hybrid controllers. A seven degrees-of-freedom tracked vehicle suspension model incorporating MR dampers has been adopted for comparison between the performance of the three controllers. The model differential equations are derived based on Newton's second law of motion and the proposed control methods are developed. The performance of each control method under bump and sinusoidal road profiles for different vehicle speeds is simulated and compared with the performance of the conventional suspension system in time and frequency domains. The results show that the performance of tracked vehicle suspension with MR dampers is substantially improved. Moreover, the fuzzy-hybrid controller offers an excellent integrated performance in reducing the body accelerations as well as wheel bounce responses compared with the classical skyhook and hybrid controllers.

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