DocumentCode
3748491
Title
Intrinsic Decomposition of Image Sequences from Local Temporal Variations
Author
Pierre-Yves Laffont;Jean-Charles Bazin
Author_Institution
ETH Zurich, Zurich, Switzerland
fYear
2015
Firstpage
433
Lastpage
441
Abstract
We present a method for intrinsic image decomposition, which aims to decompose images into reflectance and shading layers. Our input is a sequence of images with varying illumination acquired by a static camera, e.g. an indoor scene with a moving light source or an outdoor timelapse. We leverage the local color variations observed over time to infer constraints on the reflectance and solve the ill-posed image decomposition problem. In particular, we derive an adaptive local energy from the observations of each local neighborhood over time, and integrate distant pairwise constraints to enforce coherent decomposition across all surfaces with consistent shading changes. Our method is solely based on multiple observations of a Lambertian scene under varying illumination and does not require user interaction, scene geometry, or an explicit lighting model. We compare our results with several intrinsic decomposition methods on a number of synthetic and captured datasets.
Keywords
"Lighting","Image color analysis","Light sources","Geometry","Robustness","Image decomposition","Image sequences"
Publisher
ieee
Conference_Titel
Computer Vision (ICCV), 2015 IEEE International Conference on
Electronic_ISBN
2380-7504
Type
conf
DOI
10.1109/ICCV.2015.57
Filename
7410414
Link To Document