Segmentation-based 3D dynamic mesh compression scheme

M. Hachani, A. O. Zaid, W. Puech
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引用次数: 1

Abstract

This paper presents a novel compression scheme for 3D dynamic meshes. The proposed method mainly uses a segmentation approach which exploits both of temporal and spatial dependencies. The temporal coherence of the geometry component is determined using the heat diffusion properties. The motion of the resulting regions is accurately described by 3D affine transforms. These transforms are computed at the first frame to match the subsequent ones. The temporal prediction errors are then encoded. Comparative coding test, for 3D dynamic meshes, were conducted to evaluate the coding efficiency of the proposed compression scheme. Simulations demonstrate that the rate/distortion results are competitive when compared to the state of the art.
基于分段的三维动态网格压缩方案
提出了一种新的三维动态网格压缩方案。该方法主要采用一种同时利用时间依赖性和空间依赖性的分割方法。利用热扩散特性确定几何分量的时间相干性。结果区域的运动被三维仿射变换精确地描述。这些变换在第一帧计算,以匹配随后的帧。然后对时间预测误差进行编码。对三维动态网格进行了对比编码测试,以评价所提压缩方案的编码效率。仿真结果表明,与最先进的技术相比,速率/失真结果具有竞争力。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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