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首页> 外文期刊>Journal of Applied Physics >Generating random and nonoverlapping dot patterns for liquid-crystal display backlight light guides using molecular-dynamics method
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Generating random and nonoverlapping dot patterns for liquid-crystal display backlight light guides using molecular-dynamics method

机译:使用分子动力学方法为液晶显示器背光光导生成随机和不重叠的点图案

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摘要

This paper employs the molecular-dynamics method to generate random-dot patterns for light guides designed for backlight systems. The proposed approach combines various numerical techniques and is designed to optimize the dot-density distribution in order to satisfy the uniform luminance requirements demanded by liquid-crystal displays. In the proposed algorithm, the total domain is divided into a prescribed number of cells whose dot densities can be individually adjusted in order to fine tune the luminance conditions in accordance with the light source position and type. In addition, a variable truncation distance is implemented in each cell according to the dot density of that cell. This variable r-cut technique localizes the repulsive force effects acting within each cell in order that a high-dot-density gradient can be achieved in the overall dot distribution. Finally, an average force control technique is developed to ensure the uniformity of the dot distribution as it passes across the cell boundaries. Several illustrative examples are provided to demonstrate the robustness of the proposed molecular-dynamics dot-generation algorithm.
机译:本文采用分子动力学方法为用于背光系统的光导生成随机点图案。所提出的方法结合了各种数值技术,并且被设计为优化点密度分布,以便满足液晶显示器所要求的均匀亮度要求。在提出的算法中,将总域划分为指定数量的单元,可以根据需要调整单元密度,以便根据光源位置和类型微调亮度条件。另外,根据每个单元的点密度在每个单元中实现可变的截断距离。这种可变的r-cut技术可将作用在每个单元中的排斥力效应定位在局部,以便在整个点分布中实现高点密度梯度。最后,开发了一种平均力控制技术,以确保点分布穿过单元边界时的均匀性。提供了几个说明性示例,以证明所提出的分子动力学点生成算法的鲁棒性。

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