DocumentCode :
2046759
Title :
Control of vehicle vibration using the combined compliant actuator and suspension system
Author :
Mareta, Sannia ; Halim, Dunant ; Popov, Atanas A.
Author_Institution :
Dept. of Mech., Mater. & Manuf. Eng., Univ. of Nottingham Ningbo China, Ningbo, China
fYear :
2015
fDate :
2-5 Aug. 2015
Firstpage :
1875
Lastpage :
1880
Abstract :
This paper deals with the development of a vehicle vibration control system by integrating a compliant actuator in the existing vehicle suspension system. The compliant actuator is attached to the vehicle body and consists of a servo-motor, a compliant element and a pinion-rack set. A vehicle ride model is developed for the vibration control performance analysis, combining the vehicle suspension system with the compliant actuator model. The investigation results show that the compliant actuator can provide beneficial passive and active vibration control characteristics, particularly at the low frequency region around the vehicle body resonance. The operational bandwidth of the compliant actuator can be adjusted according to the selected compliant stiffness and it has the benefits of protecting the actuator against potential shocks received during vehicle ride. These benefits offer an attractive alternative for the actuator used in vehicle suspension system, compared to the conventional rigid actuator. The active vibration control results using an output feedback control demonstrate the effectiveness of the proposed system in reducing the vehicle body acceleration at important low frequencies.
Keywords :
acceleration control; actuators; elasticity; feedback; road vehicles; servomotors; suspensions (mechanical components); vehicle dynamics; vibration control; active vibration control characteristics; combined compliant actuator; compliant actuator model; compliant element; compliant stiffness; operational bandwidth; output feedback control; passive vibration control characteristics; pinion-rack set; rigid actuator; servo-motor; vehicle body; vehicle body acceleration; vehicle ride; vehicle ride model; vehicle suspension system; vehicle vibration control; vibration control performance analysis; Actuators; Frequency control; Resonant frequency; Suspensions; Vehicles; Vibration control; Vibrations; Compliant actuator; vehicle ride model; vehicle suspension; vibration control;
fLanguage :
English
Publisher :
ieee
Conference_Titel :
Mechatronics and Automation (ICMA), 2015 IEEE International Conference on
Conference_Location :
Beijing
Print_ISBN :
978-1-4799-7097-1
Type :
conf
DOI :
10.1109/ICMA.2015.7237772
Filename :
7237772
Link To Document :
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