DocumentCode :
826732
Title :
Estimation of the Number of Decomposition Levels for a Wavelet-Based Multiresolution Multisensor Image Fusion
Author :
Pradhan, Pushkar S. ; King, Roger L. ; Younan, Nicolas H. ; Holcomb, Derrold W.
Author_Institution :
Dept. of Electr. & Comput. Eng., Mississippi State Univ., MS
Volume :
44
Issue :
12
fYear :
2006
Firstpage :
3674
Lastpage :
3686
Abstract :
The wavelet-based scheme for the fusion of multispectral (MS) and panchromatic (PAN) imagery has become quite popular due to its ability to preserve the spectral fidelity of the MS imagery while improving its spatial quality. This is important if the resultant imagery is used for automatic classification. Wavelet-based fusion results depend on the number of decomposition levels applied in the wavelet transform. Too few decomposition levels result in poor spatial quality fused images. On the other hand, too many levels reduce the spectral similarity between the original MS and the pan-sharpened images. If the shift-invariant wavelet transform is applied, each excessive decomposition level results in a large computational penalty. Thus, the choice of the number of decomposition levels is significant. In this paper, PAN and MS image pairs with different resolution ratios were fused using the shift-invariant wavelet transform, and the optimal decomposition levels were determined for each resolution ratio. In general, it can be said that the fusion of images with larger resolution ratios requires a higher number of decomposition levels. This paper provides the practitioner an understanding of the tradeoffs associated with the computational demand and the spatial and spectral quality of the wavelet-based fusion algorithm as a function of the number of decomposition levels
Keywords :
image fusion; remote sensing; wavelet transforms; automatic classification; decomposition levels; multiresolution multisensor image fusion; multispectral imagery; pan-sharpened images; panchromatic imagery; shift-invariant wavelet transform; spectral similarity; wavelet-based scheme; Image analysis; Image fusion; Image resolution; Principal component analysis; Roads; Spatial resolution; Stress; Transportation; Vegetation mapping; Wavelet transforms; Image fusion; multiresolution; multispectral (MS); pan-sharpening; shift invariant; wavelet transform;
fLanguage :
English
Journal_Title :
Geoscience and Remote Sensing, IEEE Transactions on
Publisher :
ieee
ISSN :
0196-2892
Type :
jour
DOI :
10.1109/TGRS.2006.881758
Filename :
4014324
Link To Document :
بازگشت