DocumentCode :
714448
Title :
Fast geodesic saliency map for Infrared Imagery
Author :
Gundogdu, Erhan
Author_Institution :
EO Sistem Tasarim Mudurlugu, MGEO, Ankara, Turkey
fYear :
2015
fDate :
16-19 May 2015
Firstpage :
958
Lastpage :
961
Abstract :
In this work, a saliency map calculation method for Infrared Imagery has been proposed and the resulting map is used for segmentation of the salient objects in the image. The proposed method exploits the geodesic distance concept and computational complexity is much less than the similar methods. Moreover, the proposed work is amenable to be parallelized, suitable for multi-core or FPGA implementation. This method uses the assumption that the boundaries of an image belong to the background. Basically, the geodesic distance of each pixel to the image boundary is calculated and this distance is a measure of the distance to the background model and proportional to the foreground model. The proposed method is tested in our IR dataset and the results reveal that this method has similar performance compared to its counterpart, which uses an approximate geodesic distance metric as this method does. In addition, the proposed work has also been tested in RGB images and results are illustrated.
Keywords :
computational complexity; image segmentation; infrared imaging; FPGA implementation; IR dataset; RGB images; background model; computational complexity; fast geodesic saliency map; foreground model; geodesic distance concept; geodesic distance metric; image boundary; infrared imagery; multicore implementation; saliency map calculation method; salient object segmentation; Field programmable gate arrays; Image segmentation; MATLAB; Object detection; Object segmentation; Reactive power; Sun; object segmentation in IR images; saliency map calculation; salient object segmentation;
fLanguage :
English
Publisher :
ieee
Conference_Titel :
Signal Processing and Communications Applications Conference (SIU), 2015 23th
Conference_Location :
Malatya
Type :
conf
DOI :
10.1109/SIU.2015.7129990
Filename :
7129990
Link To Document :
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