Sonar constrained stereo correspondence for three-dimensional seafloor reconstruction
Document Type
Conference Proceeding
Date of Original Version
11-22-2010
Abstract
There is a persistent need in the oceanographic community for accurate three dimensional reconstructions of seafloor structures. To meet this need underwater mapping techniques have expanded to include the use of stereo vision and high frequency multibeam sonar for mapping scenes 10's to 100's of square meters in size. Both techniques have relative advantages and disadvantages that depend on the task at hand and the desired accuracy. In this paper, we develop a method to constrain the often problematic stereo correspondence search to small sections of the image that correspond to estimated ranges along the epipolar lines calculated from coregistered multibeam sonar micro-bathymetry. This approach can be applied to both sparse feature-based and dense area-based stereo correspondence techniques. Data were collected on an underwater vehicle survey using a calibrated stereo rig and a multibeam sonar gathering coincident datasets. Overall, the constrained correspondence method shows improvements in the number and reliability of correct matches and allows for reduction in complexity of feature descriptors but it is reliant on the quality of both intrinsic and extrinsic sensor calibration. © 2010 IEEE.
Publication Title, e.g., Journal
OCEANS'10 IEEE Sydney, OCEANSSYD 2010
Citation/Publisher Attribution
Inglis, Gabrielle, and Chris Roman. "Sonar constrained stereo correspondence for three-dimensional seafloor reconstruction." OCEANS'10 IEEE Sydney, OCEANSSYD 2010 (2010). doi: 10.1109/OCEANSSYD.2010.5603908.