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Eco-driving performance assessment with in-car visual and haptic feedback assistance

Article dans une revue avec comité de lecture
Auteur
AZZI, Slim
REYMOND, Gilles
KEMENY, Andras
133641 Technocentre Renault [Guyancourt]
ccMERIENNE, Frédéric
22594 Laboratoire Electronique, Informatique et Image [UMR6306] [Le2i]

URI
http://hdl.handle.net/10985/6855
DOI
10.1115/1.3622753
Date
2011
Journal
Journal of Computing and Information Science in Engineering

Résumé

In this experiment, 28 participants completed an urban driving task in a highly immersive driving simulator at Renault’s Technical Centre for Simulation. This simulator provides a 150 deg field of view in a fully instrumented cockpit. Two different eco-driving assistance devices were added: a visual display on the midconsole and a force feedback system on the gas pedal, in order to apply an additionnal reaction torque on drivers’ foot. The feedback information was computed by comparing the car’s instant acceleration with an optimal acceleration level based on a proprietary consumption model of a Renault diesel engine. This experiment has three main goals: I. Assess the contribution of verbal instructions to eco-driving performance; II. Quantify the additional contribution generated by two eco-driving assistance systems (visual and haptic); III. Measure drivers’ acceptance of haptic eco-driving assistance system. Basic eco-driving instructions, such as changing gears under 2000 Rpm, yield significant decrease of polluting emissions. Assisting drivers with visual, haptic, or visual-haptic on-board devices, in addition to low engine speed verbal instructions, lead to supplementary significant savings of polluting emissions. There is no significant difference between assistance feedback type; suggesting that the haptic feedback provides the same ecoperformance as visual feedback. In particular, subjects show good adaptation to the haptic feedback pedal at first utilization of the system. They apparently relied more on haptic modality to achieve the eco-driving task, when they used both visual and haptic assistance.

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Documents liés

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  • Eco-driving performance assessment with in-car visual and haptic feedback assistance 
    Communication avec acte
    AZZI, Slim; REYMOND, Gilles; KEMENY, Andras; ccMERIENNE, Frédéric (INRETS, 2010)
    In this experiment, 28 participants completed an urban driving task in the CARDS simulator at Renault’s Technical Centre for Simulation. This simulator, based on the SCANeR2© software package, provides a 150° field of view ...
  • Driver trust and reliance on a navigation system: Effect of graphical display 
    Communication avec acte
    BARTHOU, Adrien; KEMENY, Andras; REYMOND, Gilles; BERTHOZ, Alain; ccMERIENNE, Frédéric (INRETS, 2010)
    The present study investigates the influence of in-car navigation system graphic’s appearance on driver trust and reliance on the system. Two navigation systems were used: one with a realistic interface and one with a ...
  • Multi-view VR system for co-located multidisciplinary collaboration and its application in ergonomic design 
    Communication avec acte
    LI, Bo; ccLOU, Ruding; POSSELT, Javier; ccSEGONDS, Frederic; ccMERIENNE, Frédéric; KEMENY, Andras (2017)
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    Brevet
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    Procédé d'affichage d'une vue virtuelle sur un écran d'affichage d'un dispositif d'affichage électronique nomade (1) tenu par un utilisateur (U) et dans une installation d'environnement virtuel (10) dans laquelle est ...

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