DocumentCode :
1036254
Title :
Quadtree-guided 3-D interpolation of irregular sonar data sets
Author :
Loke, Robert Edward ; Du Buf, J. M Hans
Author_Institution :
Vision Lab., Univ. of Algarve, Faro, Portugal
Volume :
29
Issue :
2
fYear :
2004
fDate :
4/1/2004 12:00:00 AM
Firstpage :
457
Lastpage :
471
Abstract :
Bottom-penetrating sonar can be used to visualize large areas, for example by normal logging and printing of collected pings. In many applications, it is necessary to obtain an impression of three-dimensional (3-D) structures, but this is not easy because of the irregular spatial sampling due to coarse ship trajectories. Normally, the ping map and the ping data, cover only a very small part of a region of interest. In this paper, we describe a new method for interpolating irregularly spaced sonar data. The basic idea is to use a two-dimensional quadtree of the ping map in order to guide the 3-D interpolation process: since gaps between pings become smaller at higher tree levels, the volume can be filled by marking neighborhood relations in the quadtree and interpolating available pings when they become neighbors. Different marking schemes and their central processing unit times are compared. In the interpolation process, we apply cross correlations of ping data in order to construct continuity of sloping reflections. Our results show that excellent results can be obtained on real sonar data sets, even for volumes filled for less than 7%, for which processing times are reasonable even for large areas, and that the interpolated data can be used for volumetric interactive visualization.
Keywords :
bathymetry; geophysical signal processing; geophysical techniques; image reconstruction; interpolation; octrees; pattern matching; quadtrees; sonar imaging; 2D quadtree; 3D interpolation process; 3D structures; bottom-penetrating sonar; directional interpolation; interactive visualization; irregular spatial sampling; normal logging; octrees; pattern matching; ping data; ping map; quadtree-guided 3D interpolation; ship trajectory; sloping reflections; software tools; sonar applications; sonar imaging; sonar mapping; sparse data; volume visualization; volumetric interpretation; volumetric reconstruction; Biomedical imaging; Clouds; Computed tomography; Data visualization; Interpolation; Marine vehicles; Printing; Sampling methods; Sonar applications; Ultrasonic imaging; Correlation; directional interpolation; pattern matching; quadtrees/octrees; software tools; sonar; sonar applications; sonar imaging/mapping; sparse data; volume visualization; volumetric interpretation; volumetric reconstruction;
fLanguage :
English
Journal_Title :
Oceanic Engineering, IEEE Journal of
Publisher :
ieee
ISSN :
0364-9059
Type :
jour
DOI :
10.1109/JOE.2004.827644
Filename :
1315733
Link To Document :
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