Badano Aldo
Center for Devices and Radiological Health, US Food and Drug Administration, Rockville, Maryland 20857, USA.
Appl Opt. 2002 Jul 1;41(19):3847-52. doi: 10.1364/ao.41.003847.
The reflection properties of a display device influence the available contrast and affect the perception of subtle detail. The display reflection characteristics of flat-panel displays (FPDs) are appropriately described by a six-dimensional bidirectional reflectance distribution function (BRDF). I describe a Monte Carlo method for modeling the bidirectional reflectance of multilayer emissive structures used in electronic display devices. I estimate the complete BRDF using a one-dimensional angular distribution function of the luminance. I apply the method to model typical high-performance cathode-ray tube and FPD structures. I find that, for the BRDF signatures of cathode-ray tubes characterized by a specular and a quasi-Lambertian components, the estimated values for the specular and diffuse reflection coefficients agree well with low-resolution experimental measurements conducted with a rotation arm and a collimated probe. I show that emissive FPDs with thin-film organic layers on reflective substrates can exhibit a predominant specular peak broadened by short-range light scattering.
显示设备的反射特性会影响其可用对比度,并影响对细微细节的感知。平板显示器(FPD)的显示反射特性可通过六维双向反射分布函数(BRDF)进行恰当描述。我描述了一种蒙特卡罗方法,用于对电子显示设备中使用的多层发光结构的双向反射进行建模。我使用亮度的一维角分布函数来估计完整的BRDF。我将该方法应用于对典型的高性能阴极射线管和FPD结构进行建模。我发现,对于以镜面反射和准朗伯分量为特征的阴极射线管的BRDF特征,镜面反射系数和漫反射系数的估计值与使用旋转臂和准直探头进行的低分辨率实验测量结果吻合良好。我表明,在反射基板上具有薄膜有机层的发光FPD可能会呈现出因短程光散射而变宽的主要镜面反射峰。