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Full optical characterization of auto-stereoscopic 3D displays using local viewing angle and imaging measurements

机译:使用局部视角和成像测量功能对自动立体3D显示器进行全光学表征

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Two commercial auto-stereoscopic 3D displays are characterized a using Fourier optics viewing angle system and an imaging video-luminance-meter. One display has a fixed emissive configuration and the other adapts its emission to the observer position using head tracking. For a fixed emissive condition, three viewing angle measurements are performed at three positions (center, right and left). Qualified monocular and binocular viewing spaces in front of the display are deduced as well as the best working distance. The imaging system is then positioned at this working distance and crosstalk homogeneity on the entire surface of the display is measured. We show that the crosstalk is generally not optimized on all the surface of the display. Display aspect simulation using viewing angle measurements allows understanding better the origin of those crosstalk variations. Local imperfections like scratches and marks generally increase drastically the crosstalk, demonstrating that cleanliness requirements for this type of display are quite critical.
机译:两个商业自动立体3D显示器的特征是使用傅立叶光学系统的视角和成像视频亮度计。一个显示器具有固定的发射配置,另一个显示器通过头部跟踪使其发射适应观察者的位置。对于固定的发射条件,在三个位置(中心,右和左)执行三个视角测量。推断出显示器前面的合格的单眼和双目观察空间以及最佳工作距离。然后将成像系统放置在该工作距离处,并测量显示器整个表面上的串扰均匀性。我们表明,串扰通常不会在显示器的所有表面上得到优化。使用视角测量的显示纵横比模拟可以更好地了解这些串扰变化的根源。划痕和痕迹等局部缺陷通常会大大增加串扰,表明此类显示器的清洁度要求非常关键。

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