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Deep Joint Estimation Network for Satellite Video Super-Resolution With Multiple Degradations

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Super-resolution (SR) for satellite video data has been a hot research topic in the field of remote sensing video analysis. The existing satellite video SR methods assume that the blur… Click to show full abstract

Super-resolution (SR) for satellite video data has been a hot research topic in the field of remote sensing video analysis. The existing satellite video SR methods assume that the blur kernel in the imaging degradation model is known. However, the blur kernel in real satellite videos is usually unknown, which inevitably results in poor performance when the true blur kernel is not consistent with a predefined blur kernel. To address this issue, this article proposes a deep joint estimation network for satellite video SR (JENSVSR), which jointly estimates blur kernels and SR frames. Specifically, JENSVSR is composed of a video SR subnetwork and a blur kernel estimation subnetwork. On one hand, the video SR subnetwork makes use of multiple video frames to generate super-resolved satellite frames. To effectively fuse information from adjacent frames, an alignment and fusion module is proposed in the feature space. On the other hand, the blur estimation subnetwork is also proposed to predict blur kernels. The two subnetworks are coupled by cross-task feature fusion modules (CTFFMs) to achieve joint estimation rather than two-step independent estimation. The performance of our proposed method is evaluated on synthetic and real satellite videos. The experimental results show that our proposed method is superior to the current state-of-the-art SR methods.

Keywords: video; super resolution; blur kernel; joint estimation; estimation; satellite video

Journal Title: IEEE Transactions on Geoscience and Remote Sensing
Year Published: 2022

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