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Application of Taguchi Method in Light-Emitting Diode Backlight Design for Wide Color Gamut Displays

机译:Taguchi方法在宽色域显示器的发光二极管背光设计中的应用

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This paper utilizes the Taguchi design method to optimize the design parameters of a light-emitting diode (LED) backlight unit for wide color gamut liquid crystal displays (LCDs). In optimizing the design, the parametric analyses consider two particular regions of the backlight unit, namely, the color-mixing zone and the extractor zone. The Taguchi experiments are configured in L9 (34 ) orthogonal arrays and are designed to evaluate the effects of the design parameters on the color-difference, optical efficiency and luminance of the unit. The analysis of variance (ANOVA) results reveal that the optical efficiency and color-difference properties are determined primarily by the reflector design and the length of the color mixing zone, respectively, while the luminance to the LCD panel is affected principally by the taper angle of the optical microstructures in the extractor zone. The optimal design parameters of the color-mixing zone and extractor zone are estimated from the Taguchi S/N ratio data and the ANOVA results, and are verified via ray-tracing simulations. For an input flux of 1501 lm, the optimal design shows 0.01 of the color differences in CIE 1976 color space, 85% of the optical efficiency, and 10675 nits of luminance. Thus, the optimized backlight unit provides an ideal solution for the illumination of large-scale LCD display devices.
机译:本文利用Taguchi设计方法来优化用于宽色域液晶显示器(LCD)的发光二极管(LED)背光单元的设计参数。在优化设计时,参数分析考虑背光单元的两个特定区域,即混色区和提取区。 Taguchi实验配置在L9(34)正交阵列中,旨在评估设计参数对单元的色差,光学效率和亮度的影响。方差分析(ANOVA)结果表明,光学效率和色差特性分别主要由反射镜设计和颜色混合区的长度决定,而LCD面板的亮度主要受锥角影响。提取区的光学微结构。根据Taguchi信噪比数据和ANOVA结果估计了颜色混合区域和提取区域的最佳设计参数,并通过光线跟踪模拟对其进行了验证。对于1501 lm的输入通量,最佳设计显示CIE 1976色彩空间中的色差为0.01,光学效率为85%,亮度为10675尼特。因此,优化的背光单元为大型LCD显示设备的照明提供了理想的解决方案。

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