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Image quality affected by diffraction of aperture structure arrangement in transparent active-matrix organic light-emitting diode displays

机译:透明有源矩阵有机发光二极管显示器中的孔径结构布置衍射对图像质量的影响

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摘要

Transparent display is one of the main technologies in next-generation displays, especially for augmented reality applications. An aperture structure is attached on each display pixel to partition them into transparent and black regions. However, diffraction blurs caused by the aperture structure typically degrade the transparent image when the light from a background object passes through finite aperture window. In this paper, the diffraction effect of an active-matrix organic light-emitting diode display (AMOLED) is studied. Several aperture structures have been proposed and implemented. Based on theoretical analysis and simulation, the appropriate aperture structure will effectively reduce the blur. The analysis data are also consistent with the experimental results. Compared with the various transparent aperture structure on AMOLED, diffraction width (zero energy position of diffraction pattern) of the optimize aperture structure can be reduced 63% and 31% in the x and y directions in CASE 3. Associated with a lenticular lens on the aperture structure, the improvement could reach to 77% and 54% of diffraction width in the x and y directions. Modulation transfer function and practical images are provided to evaluate the improvement of image blurs. (C) 2015 Optical Society of America
机译:透明显示器是下一代显示器的主要技术之一,尤其是对于增强现实应用而言。在每个显示像素上附加一个孔结构,以将它们划分为透明和黑色区域。然而,当来自背景物体的光通过有限的孔径窗口时,由孔径结构引起的衍射模糊通常会降低透明图像的质量。本文研究了有源矩阵有机发光二极管显示器(AMOLED)的衍射效应。已经提出并实现了几种孔结构。根据理论分析和仿真,适当的光圈结构将有效减少模糊。分析数据也与实验结果一致。与AMOLED上的各种透明光圈结构相比,在CASE 3中,优化光圈结构的衍射宽度(衍射图的零能量位置)在x和y方向上可以分别减少63%和31%。孔径结构的改进可以达到x和y方向衍射宽度的77%和54%。提供调制传递函数和实际图像以评估图像模糊的改善。 (C)2015年美国眼镜学会

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