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Simultaneous hyperspectral image super-resolution and geometric alignment with a hybrid camera system

机译:混合摄像头系统同时实现超光谱图像的超分辨率和几何对准

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Existing snapshot hyperspectral cameras usually suffer from limited spatial resolution in order to maintain reasonable temporal and spectral resolution. In contrast, the spatial resolution of commercial RGB cameras is quite high. Therefore, many methods have been developed for hyperspectral image (HSI) super-resolution by fusing a high resolution RGB image and a low resolution HSI. These methods have been extensively evaluated by using simulated image pair with exact geometric alignment. However, the effect of misalignment on these methods, which always arises in hybrid camera system, has rarely been investigated. In this paper, we present an effective approach for simultaneous HSI super-resolution and geometric alignment of the image pair with drastically contrasting spatial resolution. Besides, we also conduct a systematic evaluation of the misalignment effect on five state-of-the-art hybrid HSI super-resolution methods under five different geometric transformations and three benchmark datasets. Experimental results on both synthetic data and real images show that the proposed method outperforms the current state-of-the-art HSI super-resolution methods with a misaligned hybrid camera system in terms of both objective metric and subjective visual quality. (C) 2019 Elsevier B.V. All rights reserved.
机译:为了保持合理的时间和光谱分辨率,现有的快照高光谱照相机通常遭受有限的空间分辨率。相反,商用RGB相机的空间分辨率很高。因此,通过融合高分辨率的RGB图像和低分辨率的HSI,已开发出许多用于高光谱图像(HSI)超分辨率的方法。通过使用具有精确几何对齐的模拟图像对这些方法进行了广泛的评估。但是,很少会研究混合相机系统中经常出现的未对准对这些方法的影响。在本文中,我们提出了一种有效的方法,用于同时进行HSI超分辨率和具有极大对比空间分辨率的图像对的几何对齐。此外,我们还对在五个不同的几何变换和三个基准数据集下五种最新的混合HSI超分辨率方法的未对准效果进行了系统的评估。在合成数据和真实图像上的实验结果表明,在客观指标和主观视觉质量方面,所提出的方法均优于具有未对准混合摄像头系统的最新HSI超分辨率方法。 (C)2019 Elsevier B.V.保留所有权利。

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