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Single Image Reflection Removal with Physically-Based Training Images

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Recently, deep learning-based single image reflection separation methods have been exploited widely. To benefit the learning approach, a large number of training image pairs (i.e., with and without reflections) were synthesized in various ways, yet they are away from a physically-based direction. In this paper, physically based rendering is used for faithfully synthesizing the required training images, and a corresponding network structure and loss term are proposed. We utilize existing RGBD/RGB images to estimate meshes, then physically simulate the light transportation between meshes, glass, and lens with path tracing to synthesize training data, which successfully reproduce the spatially variant anisotropic visual effect of glass reflection. For guiding the separation better, we additionally consider a module, backtrack network (BT-net) for backtracking the reflections, which removes complicated ghosting, attenuation, blurred and defocused effect of glass/lens. This enables obtaining a priori information before having the distortion. The proposed method considering additional a priori information with physically simulated training data is validated with various real reflection images and shows visually pleasant and numerical advantages compared with state-of-the-art techniques.

Soomin Kim, Yuchi Huo, Sung-Eui Yoon• 2019

Related benchmarks

TaskDatasetResultRank
Image Reflection RemovalReal20
PSNR19.41
56
Image Reflection RemovalWild
PSNR24.94
20
Image Reflection RemovalPostcard
PSNR22.8
20
Image Reflection RemovalNature
PSNR20.56
18
Image Reflection RemovalSolid
PSNR23.86
9
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