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High-definition projection screen based on multiple light scattering technique

机译:基于多光散射技术的高清投影屏

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摘要

A novel rear projection screen (Blue Ocean~® screen, Nitto Jyushi Kogyo, Co., Ltd.) has been developed. Blue Ocean~® screen is a single polymer plate requiring no lens element. The projected image is formed on the screen surface by the multiple light scattering. An image light is multiply scattered and is converted into homogeneous light distribution efficiently due to the internal particles of micron order dispersed in the acrylic polymer matrix. An ambient light is reduced by the dye molecules doped in the polymer and the anti-reflective coating on the screen surface. The condition of the particles and the concentration of the dye molecules have been optimized by the ray tracing simulation program based on Mie scattering theory using a Monte Carlo method. The screen containing the particles of optimum condition exhibits the wide viewing angle, the well-controlled color balance, and the high sharpness level at the same time. The contrast level of the projected image in ambient light is improved by controlling the concentration of the dye molecules. This paper describes the optimization obtained theoretically and experimentally, and demonstrates the advantage of Blue Ocean~® screen.
机译:已经开发出一种新型的后投屏(Blue Ocean~®屏幕,Nitto Jyushi Kogyo,Co.,Ltd。)。 Blue Ocean~®屏幕是一个不需要透镜元件的单个聚合物板。通过多光散射在屏幕表面上形成投影图像。由于分散在丙烯酸类聚合物基质中的微米级的内部颗粒,图像光乘以散射并且被高效地转换成均匀的光分布。通过掺杂在聚合物中的染料分子和筛网表面上的抗反射涂层减小环境光。利用蒙特卡罗方法,通过基于MIE散射理论的射线跟踪模拟程序优化了颗粒的条件和染料分子的浓度。含有最佳条件颗粒的筛网表现出宽视角,良好控制的色彩平衡和同时具有高锐度水平。通过控制染料分子的浓度来改善环境光中投影图像的对比度。本文介绍了理论上和实验获得的优化,并展示了Blue Ocean〜®屏幕的优势。

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