A Physically-based Approach to Reflection Separation

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We propose a physically-based approach to separate reflection using multiple polarized images with a background scene captured behind glass. The input consists of three polarized images, each captured from the same view point but with a different polarizer angle separated by 45 degrees. The output is the high-quality separation of the reflection and background layers from each of the input images. A main technical challenge for this problem is that the mixing coefficient for the reflection and background layers depends on the angle of incidence and the orientation of the plane of incidence, which are spatially-varying over the pixels of an image. Exploiting physical properties of polarization for a double-surfaced glass medium, we propose an algorithm which automatically finds the optimal separation of the reflection and background layers. Thorough experiments, we demonstrate that our approach can generate superior results to those of previous methods.
Publisher
IEEE Computer Society and the Computer Vision Foundation (CVF)
Issue Date
2012-06
Language
English
Citation

IEEE conference on Computer Vision and Pattern Recognition(CVPR), pp.9 - 16

URI
http://hdl.handle.net/10203/170413
Appears in Collection
EE-Conference Papers(학술회의논문)CS-Conference Papers(학술회의논문)
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