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Performance comparison of color spaces in Thepade's transform error vector rotation algorithms of vector quantization for grayscale image colorization with Slant and Hartley transforms

机译:斜拉和哈特利变换的灰度图像着色矢量量化中彩色空间的性能比较矢量量化的旋转算法

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The paper presents an effective monochrome image colorization technique using Thepade's transform error vector rotation algorithms with Slant and Hartley transforms in RGB, YIQ and YCbCr color spaces. Vector quantization is used to generate a color pallet which colors a target monochrome image. Two error vector sequences (Slant & Hartley) represented by binary numbers based on Slant and Hartley transforms are used in Thepade's transform error vector rotation algorithms. The proposed method works in two stages. In first stage color pallet is generated using the source (color) image from which color traits need to be taken using Thepade's transform error vector rotation algorithms and then colors are transferred to a target (monochrome) image using generated color pallet. The quality of colorization depends on the source color image chosen and the target monochrome image which is to be colored. As there are no objective criteria for qualitative analysis of the proposed method, here the grayscale version of original color image is recolored using proposed technique and as quality comparison criteria, the mean squared error between original color image and recolored image is calculated. Five different codebook (color pallet) sizes give variations of proposed colorization method. Using recolorization of 15 different images, The experimental results show that higher color pallet sizes give better colorization in RGB and YIQ color space and lower color pallet sizes give better colorization in YCbCr color space.
机译:本文介绍了一种有效的单色图像彩色技术,使用ThePade的变换错误矢量旋转算法,RGB,YIQ和YCBCR颜色空间中的斜率和Hartley变换。矢量量化用于产生颜色靶单色图像的颜色托盘。由基于斜率和Hartley变换的二进制数表示的两个错误矢量序列(斜率&hartley)用于ThePade的变换错误矢量旋转算法。所提出的方法在两个阶段工作。在第一阶段颜色托盘使用源(颜色)图像产生,使用该源(颜色)图像使用该源代码来使用ThePade的变换误差矢量旋转算法,然后使用产生的颜色托盘传送到目标(单色)图像。着色质量取决于所选择的源彩色图像和待着色的目标单色图像。由于没有对所提出的方法进行定性分析的客观标准,因此使用所提出的技术来重新调整原始彩色图像的灰度版本,并且作为质量比较标准,计算原始彩色图像和重新传输图像之间的平均平方误差。五个不同的码本(彩色托盘)尺寸给出了所提出的着色方法的变化。实验结果表明,使用较高的颜色托盘尺寸在RGB和Yiq颜色空间中提供更高的颜色托盘尺寸,较低的托盘尺寸在YCBCR颜色空间中提供更好的色彩尺寸。

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