Title :
Statistical Inverse Ray Tracing for Image-Based 3D Modeling
Author :
Shubao Liu ; Cooper, David B.
Author_Institution :
Image Analytics Lab., GE Global Res., Niskayuna, NY, USA
Abstract :
This paper proposes a new formulation and solution to image-based 3D modeling (aka “multi-view stereo”) based on generative statistical modeling and inference. The proposed new approach, named statistical inverse ray tracing, models and estimates the occlusion relationship accurately through optimizing a physically sound image generation model based on volumetric ray tracing. Together with geometric priors, they are put together into a Bayesian formulation known as Markov random field (MRF) model. This MRF model is different from typical MRFs used in image analysis in the sense that the ray clique, which models the ray-tracing process, consists of thousands of random variables instead of two to dozens. To handle the computational challenges associated with large clique size, an algorithm with linear computational complexity is developed by exploiting, using dynamic programming, the recursive chain structure of the ray clique. We further demonstrate the benefit of exact modeling and accurate estimation of the occlusion relationship by evaluating the proposed algorithm on several challenging data sets.
Keywords :
Bayes methods; Markov processes; dynamic programming; inference mechanisms; random processes; ray tracing; solid modelling; stereo image processing; Bayesian formulation; MRF model; Markov random field model; dynamic programming; generative statistical modeling; geometric priors; image analysis; image-based 3D modeling; inference; linear computational complexity; multiview stereo; occlusion relationship; physically sound image generation model; random variables; ray clique; recursive chain structure; statistical inverse ray tracing; volumetric ray tracing; Computational modeling; Image reconstruction; Inference algorithms; Ray tracing; Solid modeling; Surface reconstruction; Three-dimensional displays; Markov random fields; Multi-view stereo; belief propagation; dynamic programming; image-based 3D modeling; inverse ray tracing; optimization; photo-realistic reconstruction;
Journal_Title :
Pattern Analysis and Machine Intelligence, IEEE Transactions on
DOI :
10.1109/TPAMI.2014.2315820