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Rate Distortion Optimized Graph Partitioning for Omnidirectional Image Coding

机译:对全向图像编码的速率失真优化图分隔

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Omnidirectional images are spherical signals captured by cameras with 360-degree field of view. In order to be compressed using existing encoders, these signals are mapped to planar domain. A commonly used planar representation is the equirectangular one, which corresponds to a non uniform sampling pattern on the spherical surface. This particularity is not explored in traditional image compression schemes, which treat the input signal as a classical perspective image. In this work, we build a graph-based coder adapted to the spherical surface. We build a graph directly on the sphere. Then, to have computationally feasible graph transforms, we propose a rate-distortion optimized graph partitioning algorithm to achieve an effective trade-off between the distortion of the reconstructed signals, the smoothness of the signal on each subgraph, and the cost of coding the graph partitioning description. Experimental results demonstrate that our method outperforms JPEG coding of planar equirectangular images.
机译:全向图像是由具有360度视场的摄像机捕获的球形信号。为了使用现有编码器压缩,这些信号被映射到平面域。常用的平面表示是昼夜平坦的表示,其对应于球形表面上的非均匀采样图案。在传统的图像压缩方案中不探索这种特殊性,其将输入信号视为经典透视图像。在这项工作中,我们构建一个基于图形的编码器,适用于球面。我们直接在球体上构建图形。然后,为了具有计算可行的图形变换,我们提出了一种速率失真优化的图形分区算法,实现了重建信号的失真之间的有效权衡,每个子图上的信号的平滑度以及编码图的成本分区描述。实验结果表明,我们的方法优于平面昼夜图像的JPEG编码。

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