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ENHANCEMENT OF THE SAAM DRIVING SIMULATOR GRAPHICS PIPELINE FOR SPEED PERCEPTION STUDIES

机译:用于速度感知研究的SAAM驾驶模拟器图形管道的增强

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This paper presents a speed perception study focusing on the impact of a visual scale factor. This factor corresponds to the ratio between the geometric field of view (of the camera) and the driver's field of view covered by the screen. 20 participants have reproduced 2 speeds (50 and 90 km/h) without knowing the numerical values of these consigns, and with 5 different visual scale factors: 0.70, 0.85, 1.00, 1.15 and 1.30. We show that this visual factor has a significant impact on the speed reached by the subjects and that the variation of perceived speed can be deducted from the used visual scale factor. To be able to conduct this experiment, we had first to solve an image correction issue. As the visual display is projected on a cylindrical screen, a distortion correction must be performed. This correction is dependent on the viewer's position and so is also dependent on the visual scale factor. We had then to improve our image warping approach to be able to take into account in real time the observer's position (which was not the case until now). This paper presents a concise state of the art about image correction and some details about the implementation of the chosen algorithm.
机译:本文提出了一项速度感知研究,重点是视觉比例因子的影响。该因数对应于(摄像机的)几何视场与屏幕所覆盖的驾驶员视场之间的比率。 20名参与者在不知道这些货物的数值的情况下重现了2个速度(50和90 km / h),并具有5​​个不同的视觉比例因子:0.70、0.85、1.00、1.15和1.30。我们表明,这种视觉因素对受试者达到的速度有重大影响,并且可以从所使用的视觉比例因素中扣除感知速度的变化。为了能够进行此实验,我们必须首先解决图像校正问题。由于视觉显示投影在圆柱屏幕上,因此必须执行失真校正。该校正取决于观看者的位置,因此也取决于视觉比例因子。然后,我们必须改进图像变形方法,以便能够实时考虑观察者的位置(到目前为止,情况并非如此)。本文介绍了有关图像校正的简要技术现状,以及有关所选算法实现的一些细节。

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