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Single Exposure High Dynamic Range Image Reconstruction Based on Deep Dual-Branch Network

机译:基于深层双分支网络的单曝光高动态范围图像重建

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In this article, we relate the operation of single-frame-based high dynamic range (HDR) image reconstruction to the following two tasks: 1) highlight suppression in over-exposed areas and 2) noise elimination in under-exposed areas. The common goal of both tasks is to preserve or even enhance the details and improve the visibility of scenes when generating the HDR image. These two tasks can be solved separately with fundamentally different ways. In this article, we propose a dual-branch network to process the over- and under- exposed areas respectively for single-frame-based HDR image reconstruction. First, the low dynamic range (LDR) image is normalized, linearized and inputted into both branches, and the masks of the over- and under- exposed regions are calculated to detect the improper exposed areas. Second, the over- and under- exposed areas are restored and enhanced by the two branches respectively, at the same time, the color distribution is learned to obtain more consistent color saturation between the generated HDR image and the ground truth. Third, the output of the two branches and the linearized input LDR image are combined based on the masks to obtain the reconstructed HDR image. Extensive experiments show that the proposed method can efficiently restore the texture and color of the over-exposed areas, suppress the noise of the under-exposed areas, and obtain the HDR image with good contrast, clear details and high structural fidelity of the ground truth image appearance.
机译:在本文中,我们将基于单帧的高动态范围(HDR)图像重建的操作与以下两个任务的操作介绍:1)在暴露区域的过度暴露区域中突出显示抑制,2)噪声消除在暴露的区域中。两个任务的共同目标是在生成HDR图像时,保护或甚至增强细节并提高场景的可见性。这两个任务可以单独解决,并以根本不同的方式解决。在本文中,我们提出了一种双分支网络,以处理基于单帧的HDR图像重建的过度和未被曝光的区域。首先,低动态范围(LDR)图像被归一化,线性化并输入到两个分支中,并且计算过曝光的区域的掩模以检测不正确的暴露区域。其次,同时分别通过两个分支恢复和增强了过曝光的区域并增强了颜色分布,以获得所生成的HDR图像和地面真理之间的更一致的色彩饱和度。第三,基于掩模组合两个分支和线性化输入LDR图像的输出以获得重建的HDR图像。广泛的实验表明,该方法可以有效地恢复过度暴露区域的质地和颜色,抑制未暴露区域的噪音,并以良好的对比度,清晰的细节和地面真理的高结构保真度获得HDR图像图像外观。

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