Title :
An Orientation Inference Framework for Surface Reconstruction From Unorganized Point Clouds
Author :
Chen, Yi-Ling ; Lai, Shang-Hong
Author_Institution :
Dept. of Comput. Sci., Nat. Tsing Hua Univ., Hsinchu, Taiwan
fDate :
3/1/2011 12:00:00 AM
Abstract :
In this paper, we present an orientation inference framework for reconstructing implicit surfaces from unoriented point clouds. The proposed method starts from building a surface approximation hierarchy comprising of a set of unoriented local surfaces, which are represented as a weighted combination of radial basis functions. We formulate the determination of the globally consistent orientation as a graph optimization problem by treating the local implicit patches as nodes. An energy function is defined to penalize inconsistent orientation changes by checking the sign consistency between neighboring local surfaces. An optimal labeling of the graph nodes indicating the orientation of each local surface can, thus, be obtained by minimizing the total energy defined on the graph. The local inference results are propagated over the model in a front-propagation fashion to obtain the global solution. The reconstructed surfaces are consolidated by a simple and effective inspection procedure to locate the erroneously fitted local surfaces. A progressive reconstruction algorithm that iteratively includes more oriented points to improve the fitting accuracy and efficiently updates the RBF coefficients is proposed. We demonstrate the performance of the proposed method by showing the surface reconstruction results on some real-world 3-D data sets with comparison to those by using the previous methods.
Keywords :
graph theory; minimisation; radial basis function networks; solid modelling; surface reconstruction; 3-D data sets; energy function; fitting accuracy; front propagation fashion; graph nodes; graph optimization problem; local inference; optimal labeling; orientation inference framework; progressive reconstruction algorithm; radial basis functions; surface approximation hierarchy; surface reconstruction; unoriented point clouds; Clouds; Image reconstruction; Labeling; Reconstruction algorithms; Surface reconstruction; Surface treatment; Three dimensional displays; Belief propagation; graph optimization; implicit surface; orientation inference; surface reconstruction;
Journal_Title :
Image Processing, IEEE Transactions on
DOI :
10.1109/TIP.2010.2076297