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Coupled Convolutional Neural Network With Adaptive Response Function Learning for Unsupervised Hyperspectral Super Resolution

delete2021-03-01
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OA
AI
K
Ke Zheng
高连如 (Lianru Gao) *
W
Wenzhi Liao
D
Danfeng Hong
B
Bing Zhang
X
Ximin Cui
J
Jocelyn Chanussot
DOI:10.1109/TGRS.2020.3006534delete
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摘要

摘要

En 中文
Due to the limitations of hyperspectral imaging systems, hyperspectral imagery (HSI) often suffers from poor spatial resolution, thus hampering many applications of the imagery. Hyperspectral super resolution refers to fusing HSI and MSI to generate an image with both high spatial and high spectral resolutions. Recently, several new methods have been proposed to solve this fusion problem, and most of these methods assume that the prior information of the point spread function (PSF) and spectral response function (SRF) are known. However, in practice, this information is often limited or unavailable. In this work, an unsupervised deep learning-based fusion method-HyCoNet-that can solve the problems in HSI-MSI fusion without the prior PSF and SRF information is proposed. HyCoNet consists of three coupled autoencoder nets in which the HSI and MSI are unmixed into endmembers and abundances based on the linear unmixing model. Two special convolutional layers are designed to act as a bridge that coordinates with the three autoencoder nets, and the PSF and SRF parameters are learned adaptively in the two convolution layers during the training process. Furthermore, driven by the joint loss function, the proposed method is straightforward and easily implemented in an end-to-end training manner. The experiments performed in the study demonstrate that the proposed method performs well and produces robust results for different data sets and arbitrary PSFs and SRFs.
Keyword:
Adaptive learning
autoencoder
coupled convolutional neural network
hyperspectral image
super-resolution
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期刊

IEEE Transactions on Geoscience and Remote Sensing 封面图
IEEE Transactions on Geoscience and Remote Sensing
IF:
8.6
论文数:
2.1W
被引数:
10.7W

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Ghent University
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论文数: 4.5W
被引数: 5.5W
G
german aerospace centre (dlr)
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被引数: 6
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aerospace information research institute, cas
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1.5K
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被引数: 0
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chinese academy of sciences
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