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首页> 外文期刊>Journal of the Optical Society of America, A. Optics, image science, and vision >RGB-to-RGBG conversion algorithm with adaptive weighting factors based on edge detection and minimal square error
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RGB-to-RGBG conversion algorithm with adaptive weighting factors based on edge detection and minimal square error

机译:基于边缘检测的自适应加权因子和最小平方误差的RGB-to-RGBG转换算法

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摘要

The sub-pixel arrangement of the RGBG panel and the image with RGB format are different and the algorithm that converts RGB to RGBG is urgently needed to display an image with RGB arrangement on the RGBG panel. However, the information loss is still large although color fringing artifacts are weakened in the published papers that study this conversion. In this paper, an RGB-to-RGBG conversion algorithm with adaptive weighting factors based on edge detection and minimal square error (EDMSE) is proposed. The main points of innovation include the following: (1) the edge detection is first proposed to distinguish image details with serious color fringing artifacts and image details which are prone to be lost in the process of RGB-RGBG conversion; (2) for image details with serious color fringing artifacts, the weighting factor 0.5 is applied to weaken the color fringing artifacts; and (3) for image details that are prone to be lost in the process of RGB-RGBG conversion, a special mechanism to minimize square error is proposed. The experiment shows that the color fringing artifacts are slightly improved by EDMSE, and the values of MSE of the image processed are 19.6% and 7% smaller than those of the image processed by the direct assignment and weighting factor algorithm, respectively. The proposed algorithm is implemented on a field programmable gate array to enable the image display on the RGBG panel. (C) 2018 Optical Society of America
机译:RGBG面板的子像素布置和具有RGB格式的图像是不同的,并且迫切需要将RGB转换为RGBG的算法,以在RGBG面板上显示具有RGB布置的图像。然而,虽然在研究这种转换的公布论文中,信息损失仍然很大,但是在研究该转换的论文中削弱了彩色。在本文中,提出了一种基于边缘检测和最小方误差(EDMSE)的自适应加权因子的RGB-to-RGBG转换算法。创新要点包括以下内容:(1)首先提出边缘检测,以区分图像细节与严重的颜色命令文物和图像细节,在RGB-RGBG转换过程中易于丢失; (2)对于具有严重彩色伪影的图像细节,应用加权因子0.5以削弱彩色流苏伪影; (3)对于在RGB-RGBG转换过程中易于丢失的图像细节,提出了一种最小化方误差的特殊机制。实验表明,通过EDMSE略微改善了颜色命令伪像,并且分别由直接分配和加权因子算法处理的图像的图像的MSE值为19.6%和7%。所提出的算法在现场可编程门阵列上实现,以在RGBG面板上启用图像显示。 (c)2018年光学学会

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