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Super-resolution from unregistered aliased astronomical images

机译:来自未注册的别名天文图像的超分辨率

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Images captured from astronomical telescopes always have aliasing artifacts due to atmospheric turbulence, which typically conveys additional high-frequency content containing extra details of the astronomical scene. Super-resolution (SR) reconstruction can exploit the information existing in the aliasing to create a higher-resolution astronomical image, where the precise registration of input observations is generally regarded as a necessary premise. We consider SR reconstruction as a multichannel sampling scheme with uncertain deviations mathematically and present a frequency domain technique to achieve accurate alignment of aliased astronomical images by utilizing their low-frequency and aliasing-free part of the spectrum. Moreover, a planar motion model including three parameters is allowed to describe the relative uncontrolled motions between the acquisition system and the astronomical scene. Finally, a sharp high-resolution astronomical image can be reconstructed by utilizing the adaptive normalized convolution algorithm. The technique proposed is tested in simulations and practical experiments and shows very excellent SR reconstruction capabilities in the case of aliased astronomical images. (C) 2019 SPIE and IS&T
机译:由于大气湍流,从天文望远镜捕获的图像始终会出现混叠伪像,这通常会传达包含天文场景额外细节的额外高频内容。超分辨率(SR)重建可以利用混叠中存在的信息来创建更高分辨率的天文图像,其中通常将输入观测值的精确配准作为必要前提。我们将SR重建视为数学上具有不确定偏差的多通道采样方案,并提出了一种频域技术,以通过利用频谱的低频和无混叠部分来实现混叠天文图像的精确对准。此外,允许使用包含三个参数的平面运动模型来描述采集系统和天文场景之间的相对不受控制的运动。最后,可以利用自适应归一化卷积算法重建清晰的高分辨率天文图像。所提出的技术已在模拟和实际实验中进行了测试,并且在混叠天文图像的情况下显示出非常出色的SR重建能力。 (C)2019 SPIE和IS&T

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