DocumentCode
2620336
Title
Spectral Unmixing Technique Based on Flexibly Selected Endmembers
Author
Liguo, Wang ; Jing, Zhang ; Luqun, Deng
Author_Institution
Coll. of Inf. & Commun. Eng., Harbin Eng. Univ., Harbin, China
Volume
7
fYear
2009
fDate
March 31 2009-April 2 2009
Firstpage
148
Lastpage
151
Abstract
In traditional spectral unmixing methods of hyperspectral imagery, all endmembers (EMs) take part in the process of each pixel unmixing, and each EM is invariable in the whole processing. This kind of ways discounts unmixing accuracy by introducing some EMs unrelated with mixed pixel to be analyzed, and by the inaccuracy representation of each class by a fixed EM. So the traditional way of spectral unmixing can not get satisfied result. In this case, the paper proposes spectral unmixng ways based on flexibly selected EMs to improve unmixing accuracy. In the first way, partly EMs corresponding to classes of interest are selected to be used in the whole process of spectral unmixing. In the second way, related EMs of a mixed pixel are concluded by utilizing spatial information, then spectral unmixing is done with only related classes considered. In the third way, each class EM is adjusted regionally in each locally divided area. And so, more accuracy EMs are used in spectral unmixing. Experimental results show that spectral unmixing based on flexibly selected EMs can get better performance.
Keywords
geophysical signal processing; image classification; image representation; spectral analysis; flexibly-selected endmembers; hyperspectral imagery; image class representation; pixel unmixing; spatial information; spectral unmixing technique; Communications technology; Computer science; Educational institutions; Equations; Hyperspectral imaging; Kernel; Least squares methods; Military computing; Pixel; Vectors; flexibly selected endmembers; hyperspectral imagery; spectral unmixing;
fLanguage
English
Publisher
ieee
Conference_Titel
Computer Science and Information Engineering, 2009 WRI World Congress on
Conference_Location
Los Angeles, CA
Print_ISBN
978-0-7695-3507-4
Type
conf
DOI
10.1109/CSIE.2009.989
Filename
5170299
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