Title :
Ride comfort performance of electric vehicle conversion with active suspension system
Author :
Bakar, Sara AfifahBinti Abu ; Masuda, Ryosuke ; Hashimoto, Hiromu ; Inaba, Takeshi ; Jamaluddin, Hishamuddin ; Rahman, Roslan Abd ; Samin, Pakharuddin Mohd
Author_Institution :
Dept. of Appl. Comput. Eng., Tokai Univ., Hiratsuka, Japan
Abstract :
This paper presents the investigation on the performance of active suspension system in the electric vehicle (EV) conversion, controlled by the stability augmentation system algorithm [9] and a newly proposed SAS-Skyhook algorithm. The evaluations were done using a validated 7-degrees-freedom (7DOF) of vehicle´s ride model. The mathematical modelling of the vehicle model is described. A worst case scenario of random road profiles was considered to evaluate the performance of the active suspension system. The method of subjecting the random road profiles input is also described. It was found that in general, the active suspension improved the EV conversion´s ride comfort performance significantly, compared to the passive suspension system. In terms of the comparison between the active suspension system controlled by the SAS and SAS-Skyhook algorithms, the ride comfort performance provided by the SAS-Skyhook algorithm is the most significant.
Keywords :
electric vehicles; mathematical analysis; mechanical stability; performance evaluation; suspensions (mechanical components); vehicle dynamics; 7-degrees-freedom vehicle ride model; EV conversion ride comfort performance; SAS- Skyhook algorithm; active suspension system performance evaluation; electric vehicle conversion; mathematical modelling; passive suspension system; random road profiles; stability augmentation system algorithm; Electric vehicles; Mathematical model; Roads; Suspensions; Synthetic aperture sonar; Wheels; Active Suspension System; Electric Vehicle Conversion; Ride Comfort;
Conference_Titel :
SICE Annual Conference (SICE), 2012 Proceedings of
Conference_Location :
Akita
Print_ISBN :
978-1-4673-2259-1