Title :
An expectation-maximization framework for the estimation of bathymetry from side-scan sonar images
Author :
Coiras, E. ; Petillot, Y. ; Lane, D.M.
Author_Institution :
Ocean Syst. Lab., Heriot-Watt Univ., Edinburgh, UK
Abstract :
In this paper a new procedure for the computation of seabed altitude information from side-scan sonar data is presented. Although side-scan sensors do not provide direct measures of seabed elevation, their images are directly related to seabed topography. Using a mathematical model for the sonar ensonification process, approximations to the seabed characteristics can be inferred from the sonar image. The problem is however severely under-constrained, in the sense that not all the parameters involved in the image formation process can be directly determined from the side-scan image. To overcome this difficulty, we propose the utilization of a multiresolution expectation-maximization framework to select the most probable parameters from the solution space. At every iteration the estimated solution is used to simulate a side-scan image of the observed scene, which is then be compared to the side-scan image actually observed; solution parameters are then refined using gradient-descent optimization. The process is repeated until convergence is achieved.
Keywords :
bathymetry; oceanographic techniques; sonar imaging; bathymetry estimation; gradient-descent optimization; image formation process; mathematical model; multiresolution expectation-maximization framework; seabed altitude; side-scan sonar data; sonar ensonification process; Acoustic pulses; Acoustic scattering; Convergence; Layout; Oceanographic techniques; Oceans; Scattering parameters; Sonar measurements; Surface topography; Synthetic aperture sonar;
Conference_Titel :
Oceans 2005 - Europe
Conference_Location :
Brest, France
Print_ISBN :
0-7803-9103-9
DOI :
10.1109/OCEANSE.2005.1511722