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Correcting Low-Illumination Images Using Multi-Scale Fusion in a Pyramidal Framework

机译:在金字塔形框架中使用多尺度融合校正低照度图像

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In this work, the authors have proposed a method for improving the visual quality of color images suffering from low illumination. In this pyramid based multiscale technique, the input image is decomposed into four different levels of resolutions. Starting from the coarsest resolution, each image is converted to HSV space, and the illumination is computed from the V component employing multiscale Gaussian function. At this stage, Weber-Fechner law is used to construct two enhanced versions of the illumination component corresponding to two different values of a parameter. These two images are fused using PCA to construct a new V image, which is subsequently super-sampled to its next higher level of resolution. The V images of the next higher level of resolution are subjected to the same treatment until we reach the base level of the pyramid. Finally, all the V component images at the base level are fused employing PCA to construct the final resultant V component, which in turn is combined with the H and S components to construct the final result. The method has been implemented and tested on a set of real 2D color images, and the results are found satisfactory. The experimental results have been compared with those of other methods based on some objective measures.
机译:在这项工作中,作者提出了一种改善遭受低照度的彩色图像的视觉质量的方法。在这种基于金字塔的多尺度技术中,输入图像被分解为四个不同级别的分辨率。从最粗糙的分辨率开始,将每个图像转换为HSV空间,并使用多尺度高斯函数从V分量计算照度。在此阶段,使用韦伯-费希纳定律构造与参数的两个不同值相对应的照明组件的两个增强版本。使用PCA将这两个图像融合在一起,以构建一个新的V图像,随后对其进行超级采样,使其达到更高的分辨率。下一个较高分辨率的V图像将进行相同的处理,直到达到金字塔的基本水平为止。最后,使用PCA融合所有基本级别的V分量图像,以构造最终的最终V分量,然后将其与H和S分量组合以构造最终结果。该方法已在一组真实的2D彩色图像上实施和测试,结果令人满意。根据一些客观的方法,将实验结果与其他方法的结果进行了比较。

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