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Nonuniform image sampling and interpolation over deformed meshes and its hierarchical extension

机译:变形网格的非均匀图像采样和插值及其层次扩展

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Abstract: To improve the reconstructed image quality with a given number of sampling points, nonuniform sampling is desired which adapts the sampling density according to the local bandwidth of the signal. Determination of optimal sampling positions and interpolation from nonuniform samples through the use of a coordinate mapping which converts nonuniform samples into points on a regular sampling lattice. We then introduce a nonuniform sampling scheme which embeds the samples in a generally deformed mesh structure that can be easily mapped to a regular sampling lattice. The optimal samples or the mesh is generated by minimizing the interpolation error. The numerical difficulty associated with dealing with nonuniform samples are circumvented by mapping all the operations to the master domain where the samples are uniformly distributed. With this scheme, in order to maintain the mesh topology, unnecessary nodes are usually allocated in large but smooth regions. For an improved sampling efficiency, a hierarchial nonuniform sampling scheme is also developed. Which embeds the samples in a generalized quadtree structure. Compared to its nonhierarchical counterpart, this scheme can reduce the numbers of samples significantly, under the same visual quality constraint.!11
机译:摘要:为了在给定数量的采样点下提高重建的图像质量,需要非均匀采样,该采样可根据信号的本地带宽来调整采样密度。通过使用坐标映射确定最佳采样位置并从非均匀样本进行插值,该映射将非均匀样本转换为常规采样点阵上的点。然后,我们介绍了一种非均匀采样方案,该方案将样本嵌入通常变形的网格结构中,该结构可以轻松映射到常规采样点阵。通过最小化插值误差来生成最佳样本或网格。通过将所有操作映射到均匀分布样本的主域,可以避免与处理非均匀样本相关的数字难题。利用这种方案,为了维持网状拓扑,通常在大而平滑的区域中分配不必要的节点。为了提高采样效率,还开发了分层非均匀采样方案。将样本嵌入到广义的四叉树结构中。与非分层方法相比,在相同的视觉质量约束下,该方案可以显着减少样本数量!11

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