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A new approach for regularized image interpolation

机译:正则化图像插值的新方法

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This paper presents a non-iterative regularized inverse solution to the image interpolation problem. This solution is based on the segmentation of the image to be interpolated into overlapping blocks and the interpolation of each block, separately. The purpose of the overlapping blocks is to avoid edge effects. A global regularization parameter is used in interpolating each block. In this solution, a single matrix inversion process of moderate dimensions is required in the whole interpolation process. Thus, it avoids the large computational cost due to the matrices of large dimensions involved in the interpolation process. The performance of this approach is compared to the standard iterative regularized interpolation scheme and to polynomial based interpolation schemes such as the bicubic and cubic spline techniques. A comparison of the suggested approach with some algorithms implemented in the commercial ACDSee software has been performend in the paper. The obtained results reveal that the suggested solution has a better performance as compared to other algorithms from the MSE and the edges preservation points of view. Its computation time is relatively large as compared to traditional algorithms but this is acceptable when image quality is the main concern.
机译:本文提出了图像迭代插值问题的非迭代正则逆解。该解决方案是基于将要内插到重叠块中的图像的分割以及每个块的内插的。重叠块的目的是避免边缘效应。全局正则化参数用于插值每个块。在该解决方案中,在整个插值过程中需要中等尺寸的单个矩阵求逆过程。因此,由于内插处理中涉及的大尺寸矩阵,因此避免了大的计算成本。将该方法的性能与标准迭代正则化插值方案以及基于多项式的插值方案(例如双三次和三次样条技术)进行了比较。本文将建议的方法与商业ACDSee软件中实现的一些算法进行了比较。从MSE和边缘保留的角度来看,所获得的结果表明,与其他算法相比,所建议的解决方案具有更好的性能。与传统算法相比,它的计算时间相对较大,但是当图像质量是主要问题时,这是可以接受的。

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