DocumentCode :
1548979
Title :
Quantitative photogrammetric analysis of digital underwater video imagery
Author :
Li, Rongxing ; Li, Haihao ; Zou, Weihong ; Smith, Robert G. ; Curran, Terry A.
Author_Institution :
Dept. of Civil & Environ. Eng. & Geodetic Sci., Ohio State Univ., Columbus, OH, USA
Volume :
22
Issue :
2
fYear :
1997
fDate :
4/1/1997 12:00:00 AM
Firstpage :
364
Lastpage :
375
Abstract :
This paper presents a photogrammetric model for digital underwater video imagery, which has been mostly applied to qualitative analysis in the marine environment. With this model, quantitative analysis of underwater images is possible, e.g., to locate positions, calculate sizes, and measure shapes of objects from image features. The underwater photogrammetric model is based on a three-dimensional optical ray tracing technique which rigorously models imaging systems with multilens configurations and multiple refractions. The calibration procedure with two independent phases has been proven to be efficient in simplifying the computation and improving the calibration accuracy. With the current imaging system configuration and photogrammetric model, an accuracy of 0.8 cm in lateral directions and 1.2 cm along the depth direction for objects located about 2-3 m from the camera system in the object space is attainable. A PC-based digital underwater photogrammetric prototype system has been developed to implement the underwater photogrammetric model
Keywords :
CCD image sensors; calibration; computer vision; marine systems; microcomputer applications; oceanographic techniques; photogrammetry; 1.2 cm; 2 to 3 m; 3D optical ray tracing; CCD image processing; PC; calibration; current imaging; digital underwater video imagery; marine environment; multilens configurations; multiple refractions; photogrammetric model; prototype; qualitative analysis; quantitative photogrammetric analysis; refraction; underwater imaging; underwater vision; Calibration; Cameras; Image analysis; Optical imaging; Optical refraction; Position measurement; Prototypes; Ray tracing; Shape measurement; Size measurement;
fLanguage :
English
Journal_Title :
Oceanic Engineering, IEEE Journal of
Publisher :
ieee
ISSN :
0364-9059
Type :
jour
DOI :
10.1109/48.585955
Filename :
585955
Link To Document :
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