Title :
Lossless hyperspectral image compression using wavelet transform based spectral decorrelation
Author :
Toreyin, Behcet Ugur ; Yilmaz, Ozan ; Mert, Yakup Murat ; Turk, Fethi
Author_Institution :
Cankaya Univ., Ankara, Turkey
Abstract :
Integer-coefficient Discrete Wavelet Transformation (DWT) filters widely used in the literature are implemented and investigated as spectral decorrelator. As the performance of spectral decorrelation step has direct impact on the compression ratio (CR), it is important to employ the most convenient spectral decorrelator in terms of computational complexity and CR. Tests using AVIRIS image data set are carried out and CRs corresponding to various subband decomposition levels are presented within a lossless hyperspectral compression framework. Two-dimensional images corresponding to each band is compressed using JPEG-LS algorithm. Results suggest that Cohen-Daubechies-Feauveau (CDF) 9/7 integer-coefficient wavelet transform with five levels of spectral subband decomposition would be an efficient spectral decorrelator for onboard lossless hyperspectral image compression.
Keywords :
discrete wavelet transforms; filtering theory; geophysical image processing; hyperspectral imaging; image coding; remote sensing; AVIRIS image data set; CR; Cohen-Daubechies-Feauveau 9/7 integer-coefficient wavelet transform; JPEG-LS algorithm; compression ratio; integer-coefficient discrete wavelet transformation filters; onboard lossless hyperspectral image compression; remote sensing applications; subband decomposition levels; wavelet transform based spectral decorrelation; Correlation; Decorrelation; Discrete wavelet transforms; Hyperspectral imaging; Image coding; AVIRIS images; JPEG-LS; hyperspectral data compression; hyperspectral imagery; integer-coefficient wavelet transforms; lossless compression; on-board compression schemes; spectral decorrelation;
Conference_Titel :
Recent Advances in Space Technologies (RAST), 2015 7th International Conference on
Conference_Location :
Istanbul
Print_ISBN :
978-1-4673-7760-7
DOI :
10.1109/RAST.2015.7208350