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Rate-Distortion Optimized Progressive Geometry Compression

机译:率失真优化的渐进几何压缩

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During progressive transmission of 3D geometry models, the transmission order of details at different region has great effects on the quality of reconstructed models at low bit-rate. This work presents a ratedistortion (R-D) optimized progressive geometry compression scheme to improve the quality of reconstructed models by adjusting the transmission order of details. In this scheme, the input mesh is partitioned into parts, then each part is encoded into bit-stream independently, and the encoded bit-streams are truncated into segments while getting the R-D characteristics of every segment, at last all segments are assembled into a codestream based on R-D optimization, which ensure the region with rich detail will be transmitted early and make the reconstructed mesh achieve better quality as soon as possible. Experimental results show that, as compared with the well-known PGC method, the proposed one provides better R-D performance. Moreover, it provides a novel way to realize the region of interest (ROI) coding of 3D meshes.
机译:在逐步传输3D几何模型的过程中,不同区域中细节的传输顺序对低比特率的重建模型的质量有很大影响。这项工作提出了一种额定误差(R-D)优化的渐进几何压缩方案,以通过调整细节的传输顺序来提高重建模型的质量。在该方案中,将输入网格划分为多个部分,然后将每个部分分别编码为位流,将编码后的位流截断为段,同时获得每个段的RD特性,最后将所有段组装为一个基于RD优化的码流,可以确保细节丰富的区域尽早传输,并使重建的网格尽快达到更好的质量。实验结果表明,与众所周知的PGC方法相比,该方法具有更好的R-D性能。此外,它提供了一种新颖的方式来实现3D网格的感兴趣区域(ROI)编码。

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