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The method of color restoration based on CYMG complementary colors CFA pattern

机译:基于CYMG互补色CFA图案的色彩恢复方法

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Color filter arrays(CFA) based on complementary colors(CYMG) has been designed and used with the main advantage : higher spectral sensitivity and wider bandwidth than RGB CFA, especially in the low-light or short integration time environment. As for the interline-transfer, interlaced-readout complementary colors CFA pattern CCD, we propose a method of color restoration by the conversion of CYMG-YUV-RGB color space. Specifically, summing horizontally adjacent pixels from raw data can provide estimates of the luminance channel Y, while subtracting horizontally interlaced adjacent pixels can provide estimates of chrominance (color difference) channel U and V individually. A 2 × 2 pixels block of raw data is the smallest cell to figure out Y, U, V channels. Subsequently, transform YUV to RGB linearly according to the conversion formula between CYMG and RGB. At last, the raw data from CCD can be restored to RGB signals which is convenient for post-process, such as white balance. Additionally, we adopt an improved median filter to U and V channels to remove the edge zipper noise caused by interpolation, which can optimize the image quality.
机译:设计和使用基于互补色(CYMG)的彩色滤光片阵列(CFA)的主要优点是:与RGB CFA相比,光谱灵敏度更高,带宽更宽,尤其是在弱光或积分时间短的环境中。对于行间传输,隔行读出的互补色CFA图案CCD,我们提出了一种通过CYMG-YUV-RGB色彩空间的转换进行色彩恢复的方法。具体地,从原始数据求和水平相邻像素可以提供亮度通道Y的估计,而减去水平隔行扫描相邻像素可以单独提供通道U和V的色度(色差)估计。 2×2像素的原始数据块是找出Y,U,V通道的最小单元。随后,根据CYMG和RGB之间的转换公式,将YUV线性转换为RGB。最后,来自CCD的原始数据可以恢复为RGB信号,便于后期处理,例如白平衡。此外,我们对U和V通道采用了改进的中值滤波器,以消除由插值引起的边缘拉链噪声,从而可以优化图像质量。

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