Title :
Design and Control of a Small-Clearance Driving Simulator
Author :
Nehaoua, Lamri ; Mohellebi, Hakim ; Amouri, Ali ; Arioui, Hichem ; Espié, Stéphane ; Kheddar, Abderrahmane
Author_Institution :
Inst. Nat. de Rech. sur les Transp. et leur Securite (INRETS), Arcueil
fDate :
3/1/2008 12:00:00 AM
Abstract :
This paper presents a driving simulation whose aim is twofold: (1) to investigate the possibility of reducing motion clearance to achieve compact and low-cost driving simulators and (2) to evaluate multimodal and immersive virtual reality motion restitution in platooning driving. The choice has been made for a driving simulator having at least two degrees of freedom (DOF). These consist of the longitudinal displacement and seat rotations. The simulator is also equipped with a force feedback steering wheel for virtual drive assistance. These components are gathered on a serial kinematics-type platform to facilitate a control scheme and avoid the architecture complexity. A comparative study was made to devise a motion cueing strategy, taking into account both the psychophysical and technological constraints. Experimentations were carried out for several case combinations of the longitudinal displacement and seat rotations.
Keywords :
vehicle dynamics; force feedback steering wheel; longitudinal displacement; motion clearance reduction; multimodal evaluation; psychophysical constraints; small clearance driving simulator control; technological constraints; virtual reality motion restitution; Driving simulator; low clearance; motion cueing; psychophysics-based tuning;
Journal_Title :
Vehicular Technology, IEEE Transactions on
DOI :
10.1109/TVT.2007.905336