School of Electrical and Electronic Engineering, BK21 TMS Information Technology Center, Yonsei University, Seoul 120-749, Korea.
IEEE Trans Image Process. 2013 Mar;22(3):1186-98. doi: 10.1109/TIP.2012.2228489. Epub 2012 Nov 20.
In this paper, we propose a chromatic aberration (CA) correction algorithm based on a false color filtering technique. In general, CA produces color distortions called color fringes near the contrasting edges of captured images, and these distortions cause false color artifacts. In the proposed method, a false color filtering technique is used to filter out the false color components from the chroma-signals of the input image. The filtering process is performed with the adaptive weights obtained from both the gradient and color differences, and the weights are designed to reduce the various types of color fringes regardless of the colors of the artifacts. Moreover, as preprocessors of the filtering process, a transient improvement (TI) technique is applied to enhance the slow transitions of the red and blue channels that are blurred by the CA. The TI process improves the filtering performance by narrowing the false color regions before the filtering process when severe color fringes (typically purple fringes) occur widely. Last, the CA-corrected chroma-signal is combined with the TI chroma-signal to avoid incorrect color adjustment. The experimental results show that the proposed method substantially reduces the CA artifacts and provides natural-looking replacement colors, while it avoids incorrect color adjustment.
本文提出了一种基于伪色彩滤波技术的色差(CA)校正算法。一般来说,CA 会在拍摄图像的对比边缘附近产生颜色失真,称为色边,这些失真会导致伪色彩伪像。在提出的方法中,使用伪色彩滤波技术从输入图像的色度信号中滤除伪色彩分量。滤波过程使用从梯度和颜色差异中获得的自适应权重进行,这些权重的设计目的是减少各种类型的色边,而不考虑伪像的颜色。此外,作为滤波过程的预处理,应用瞬态改善(TI)技术来增强因 CA 而模糊的红色和蓝色通道的缓慢过渡。当广泛出现严重的色边(通常是紫色色边)时,TI 过程通过在滤波过程之前缩小伪色彩区域来改善滤波性能。最后,将校正后的 CA 色度信号与 TI 色度信号相结合,以避免错误的颜色调整。实验结果表明,该方法可以显著减少 CA 伪像,并提供自然的替换颜色,同时避免错误的颜色调整。