Title :
Roads and pipes detection within LADAR intensity images through fuzzy techniques
Author :
Sobrevilla, P. ; Keller, J. ; Montseny, E.
Author_Institution :
Dept. de Matematica Aplicada II, Univ. Politecnica de Catalunya, Barcelona, Spain
Abstract :
There is uncertainty in many aspects of image processing and computer vision. Fuzzy set theory and fuzzy logic are ideally suited for dealing with such uncertainty. Image segmentation is an important step in many computer vision algorithms, and errors made in this stage will impact all higher-level activities. This paper extends our earlier and on-going work in image-labeled segmentation (E. Montseny and P. Sobrevilla, 1998), wherein methods which incorporate the uncertainty of object and region definition and the faithfulness of the features to represent various objects were considered. To apply our previous system and framework to LADAR (LAser raDAR) images, it has been modified and improved. We have introduced new fuzzy morphological structural elements to eliminate "vertical noise" and false detections, and we have improved the segmentation of the histogram for dealing with problems due to the wide range and variability of gray levels of the elements appearing within these images
Keywords :
civil engineering computing; computer vision; fuzzy logic; fuzzy set theory; image segmentation; optical radar; uncertainty handling; LADAR intensity images; computer vision; errors; false detections elimination; features; fuzzy logic; fuzzy morphological structural elements; fuzzy set theory; fuzzy techniques; gray levels; histogram; image labelling; image processing; image segmentation; object definition; object representation faithfulness; pipe detection; region definition; road detection; uncertainty; vertical noise elimination; Computer errors; Computer vision; Fuzzy logic; Fuzzy set theory; Image processing; Image segmentation; Laser noise; Laser radar; Radar imaging; Uncertainty;
Conference_Titel :
IFSA World Congress and 20th NAFIPS International Conference, 2001. Joint 9th
Conference_Location :
Vancouver, BC
Print_ISBN :
0-7803-7078-3
DOI :
10.1109/NAFIPS.2001.944767