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Contrast stretching based pansharpening by using weighted differential evolution algorithm
DOI:10.1016/j.eswa.2022.118144.png)
摘要
En 中文
Pansharpening techniques were developed to generate a super-resolution multispectral pansharpened image, PI, with the combination of a multispectral image carrying high-resolution spectral information with a panchromatic image carrying high resolution spatial information. For using energy resources and communication bandwidth efficiently, Earth Observation Satellites acquire multispectral images with lower spatial resolution when compared to panchromatic images. Contrast Stretching alters the range and statistical distribution of pixel values of an image to facilitate perception of image features and can be used to match histograms of distinct images. The Contrast Stretching Based Pansharpening method, CSP, has been introduced in this paper. CSP considers the pansharpening as a resealing-based pixel-level image fusion problem in spatial domain. CSP uses the contrast stretching to generate two modified-multispectral images and one modified-panchromatic image, which are used to compute pansharpened image. The Weighted Differential Evolution Algorithm has been used to optimize the numerical values of internal parameters of CSP. The successes of CSP and 17 different pansharpening methods have been statistically compared by using three Test Image sets with different characteristics. Ten different image quality measures have been used in accuracy assessment analysis of the PIs generated by the related methods used in the Experiments. Statistical analysis exposed that CSP generates more pleasing PIs both quantitatively and qualitatively compared to the comparison methods employed in this paper.
Keyword:
Linear contrast stretching
Pansharpening
Remote sensing
Image fusion
Weighted differential evolution algorithm
期刊
IF:
7.5
论文数:
3.0W
被引数:
10.2W
机构
引用论文
A theoretical and practical survey of image fusion methods for multispectral pansharpening
INFORMATION FUSION
IF15.5
Context-driven fusion of high spatial and spectral resolution images based on oversampled multiresolution analysis基于过采样多分辨率分析的上下文驱动高空间与光谱分辨率影像融合

