首页> 外文会议>SPIE Eco-Photonics 2011 : Sustainable Design, Manufacturing, and Engineering Workforce Education for a Green Future >Design a linear irregular Fresnel lens to thin an LED-based direct-type backlight module and improve the illuminance and uniformity of LCD panel
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Design a linear irregular Fresnel lens to thin an LED-based direct-type backlight module and improve the illuminance and uniformity of LCD panel

机译:设计线性不规则菲涅尔透镜以使基于LED的直下式背光模块变薄并提高LCD面板的照度和均匀性

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We propose a Linear Irregular Fresnel Lens (denoted as LIFL) to replace the diffusion sheet and prism sheet in a rectangular LED-based Direct-type Backlight Module. The aim is to improve the illuminance and uniformity of LCD panel, as well as to reduce the cost of Backlight Module and make the Module thin. Here "Linear" means the grooves of a Fresnel lens are arranged linearly and "irregular" means that the sequence of all groove angles is not increasing or decreasing. To let the designed LIFL possess good effects of light ray guiding, two layers of LIFLs are needed. The first layer LIFL consists of x-axis grooves, whereas the second layer LIFL consists of y-axis grooves to guide all light rays guided by the first layer LIFL. The groove angles of the designed LIFL are evolved by a Genetic Algorithm which is developed in terms of the performance requirement on illuminance and uniformity of LCD panel in a rectangular LED-based Direct-type Backlight Module. In this paper, we will simulate a simple fifteen-LED Direct-type Backlight Module to demonstrate the performances on illuminance and uniformity of the designed LIFL.
机译:我们建议使用线性不规则菲涅尔透镜(表示为LIFL)来代替基于矩形LED的直接型背光模块中的扩散片和棱镜片。目的是改善LCD面板的照度和均匀性,并降低背光模块的成本并使模块变薄。此处,“线性”是指菲涅耳透镜的槽是线性排列的,“不规则”是指所有槽角的顺序没有增加或减小。为了使设计的LIFL具有良好的光线导引效果,需要两层LIFL。第一层LIFL由x轴凹槽组成,而第二层LIFL由y轴凹槽组成,以引导由第一层LIFL引导的所有光线。设计的LIFL的槽角由遗传算法演变而来,该遗传算法是根据基于矩形LED的直下式背光模块中对LCD面板的照度和均匀性的性能要求而开发的。在本文中,我们将模拟一个简单的十五个LED直接型背光模块,以演示所设计的LIFL在照度和均匀性方面的性能。

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