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Color-difference assessment and enhancement for driving headlight simulation

Article dans une revue avec comité de lecture
Auteur
VIDAL, Quentin
133641 Technocentre Renault [Guyancourt]
40831 Laboratoire Informatique, Image et Interaction - EA 2118 [L3I]
MICHELIN, Sylvain
40831 Laboratoire Informatique, Image et Interaction - EA 2118 [L3I]
LABORIE, Baptiste
534188 OKTAL [OKTAL]
KEMENY, Andras
133641 Technocentre Renault [Guyancourt]
175453 Arts et Métiers ParisTech

URI
http://hdl.handle.net/10985/13116
DOI
10.1177/0037549716636213
Date
2016
Journal
SIMULATION

Résumé

Real-time headlight simulation in driving conditions is used by most car manufacturers to assure the quality, cost, and delivery of headlight engineering design. An important parameter judged by the headlight assessment team is color restitution; indeed, this parameter has to meet the standard of “lamps for road vehicles.” Therefore, the goal of this study was the color assessment and enhancement of a driving headlight simulator. For this purpose, this study was conducted in two phases: the process of constructing two color acceptability scales that directly reflect the perception of two different populations (experts and “naive”), and the assessment of a method based on the chromatic adaptation transform (CAT) for reducing the color difference between real and virtual environments. In the first phase, we conducted two psychophysical experiments (i.e., one for each population), in which the observers had to report their degree of satisfaction about the color difference. These two experiments enabled the creation of two acceptability scales for headlight simulation. In the second phase, we compared the performance of different chromatic transformations; as a result of this comparison, we advise the use of the CAT02 transformation, in order to reduce the color difference for headlight assessment in driving simulation experiments.

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Documents liés

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  • Colorimétrie appliquée à la simulation de phare de voiture 
    Communication avec acte
    VIDAL, Quentin; MICHELIN, Sylvain; LABORIE, Baptiste; KEMENY, Andras (2014)
    Afin d’optimiser les temps de conception d’un système d’une voiture (phare, système de freinage, etc.), les industries utilisent de manière de plus en plus régulière des logiciels de simulation et de Conception Assistée ...
  • Colour-Difference Assessment for Driving Headlight Simulation 
    Communication avec acte
    VIDAL, Quentin; MICHELIN, Sylvain; LABORIE, Baptiste; KEMENY, Andras (2014)
    In high quality driving simulation applications, such as headlight simulation, colorimetric validity is essential. In virtual testing of headlight systems, it is important that the WYSIWYG (What You See Is What You Get) ...
  • Augmented Reality Head-Up-Display for Advanced Driver Assistance System: A Driving Simulation Study 
    Communication avec acte
    HALIT, Lynda; KEMENY, Andras; MICHELIN, Sylvain; ALBAUT, Valentin; ccMERIENNE, Frédéric; ccGARBAYA, Samir (AHFE International, 2014)
    Research and technological advance in the field of Augmented Reality (AR) is growing rapidly (Mas, 2011). One of the new application domains is the automobile industry, linked to the necessary men machine aspects of Advanced ...
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    AZZI, Slim; REYMOND, Gilles; KEMENY, Andras; ccMERIENNE, Frédéric (American Society of Mechanical Engineers, 2011)
    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 ...

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