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Enblending Mosaicked Remote Sensing Images With Spatiotemporal Fusion of Convolutional Neural Networks

机译:将镶嵌遥感图像与卷积神经网络的时空融合抵消

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摘要

Mosaicking of remote sensing images stitches images of different moments or sensors to produce a new image under a uniform geographic coordinate system. In a mosaicking process, the critical enblending operation is divided into color balance, seamline finder, and fusion of overlapping areas, which is still challenging to maintain color consistency and data fidelity. In this article, a new mosaicking framework using spatiotemporal fusion is proposed to solve the enblending issue. Two additional low-resolution reference images are introduced for each mosaicking image. With spatiotemporal fusion methods, all mosaicking images are reconstructed to a uniform time, then the combination of overlapping areas become easy. Furthermore, a new spatiotemporal fusion method is proposed by cascading enhanced deep neural networks to fuse images quickly and effectively. In the validation procedure, the proposed method is compared with eight color harmony methods or tools by mosaicking the red, green, and blue bands of Landsat-8 images with images from the moderate-resolution imaging spectroradiometer as the reference. The digital evaluations and visual comparisons demonstrate that the newly method outweighs majority methods regarding to the radiometric, structural, and spectral fidelity, which proves the feasibility of our new enblending method.
机译:遥感图像的摩托车缝合不同时刻或传感器的图像,以在均匀的地理坐标系下产生新图像。在一个镶嵌工艺中,临界enblending操作分为色彩平衡,接缝线取景器,和重叠区域,这仍然是具有挑战性的,以保持颜色一致性和数据保真度的融合。在本文中,提出了一种使用时空融合的新的MosaIking框架来解决讨论问题。为每个镶嵌图像引入两个额外的低分辨率参考图像。利用时空融合方法,将所有镶嵌图像重建为均匀的时间,然后重叠区域的组合变得容易。此外,通过级联增强的深神经网络来快速有效地熔化图像,提出了一种新的时空融合方法。在验证程序中,通过从中频分辨率成像光谱分析仪作为参考的图像,将所提出的方法与八种颜色和谐方法或工具进行比较。数字评估和视觉比较表明,新方法超过了关于辐射,结构和光谱保真度的多数方法,这证明了我们新的纳入方法的可行性。

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