Title :
A sonar image mosaicing algorithm based on improved SIFT for USV
Author :
Hengyu Li ; Yi Dong ; Xudong He ; Shaorong Xie ; Jun Luo
Author_Institution :
Sch. of Mechatron. Eng. & Autom., Shanghai Univ., Shanghai, China
Abstract :
As the USV (Unmanned Surface Vehicles) works in offshore waters whose operating environment is complex, sonar images obtained are low-resolution, noisy and narrow overlap region, and ultimately led to the sonar image cannot be stitched or get a serious distortion after image mosaicing. In response to these problems, this paper proposes a sonar image mosaicing algorithm based on improved SIFT for USV. For sonar image registration, we applies RANSAC (RANdom Sample Consensus) algorithm to check feature points to improve the accuracy of image registration. For the problem that the distribution of original image brightness is different, this paper conducts brightness normalization algorithms for brightness adjustment. To avoid empty points in stitched image and the problem that mapping coordinates may not be an integer, this paper respectively take inverse mapping method and image interpolation algorithm to solve the problem. In order to improve the sonar image borders and edge fusion effect, this paper proposes a weighted fusion algorithm based on threshold and edge. Finally, the experiments show that the algorithm has a certain practicality.
Keywords :
autonomous underwater vehicles; brightness; edge detection; feature extraction; geophysical image processing; image fusion; image registration; image resolution; image segmentation; interpolation; iterative methods; sonar imaging; transforms; RANSAC algorithm; SIFT; USV; brightness adjustment; brightness normalization algorithms; complex-operating environment; empty points; feature points; image brightness distribution; image interpolation algorithm; inverse mapping method; low-resolution-noisy narrow-overlap region sonar images; mapping coordinates; offshore waters; random sample consensus algorithm; sonar image border fusion effect improvement; sonar image edge fusion effect improvement; sonar image mosaicing algorithm; sonar image registration accuracy improvement; stitched image; unmanned surface vehicles; weighted fusion algorithm; Algorithm design and analysis; Brightness; Image edge detection; Image fusion; Sonar applications; Sonar equipment; Fusion algorithm; SIFT; Sonar image mosaicing; Underwater monitoring system;
Conference_Titel :
Mechatronics and Automation (ICMA), 2014 IEEE International Conference on
Conference_Location :
Tianjin
Print_ISBN :
978-1-4799-3978-7
DOI :
10.1109/ICMA.2014.6885981