在基于顶点的形状编码框架中使用弧长参数化的畸变测量

F. Sohel, Bennamoun
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引用次数: 3

摘要

现有的基于顶点的形状编码算法使用了许多不同的畸变测量技术,包括最短绝对距离(SAD)、畸变带(DB)或公差带(TB)、形状编码的精确畸变测量技术(ADMSC)和基于弦长参数化(dclp)的畸变测量技术。在这些技术中,dclp在计算上是最快的。然而,它是一种宽松的测量技术,并没有充分利用可容许的失真率-失真优化。在基于顶点的形状编码框架下,提出了一种基于弧长参数化(DMALP)的畸变测量技术。实验结果表明,该方法优于现有的几何畸变测量技术。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Distortion measurement using arc-length-parameterisation within a vertex-based shape coding framework
Existing vertex-based shape coding algorithms use a number of different distortion measurement techniques including the shortest absolute distance (SAD), distortion band (DB) or tolerance band (TB), accurate distortion measurement technique for shape coding (ADMSC) and distortion measurement based on chord-length-parameterisation (DMCLP). Among these techniques DMCLP is computationally the fastest. It however, is a relaxed measurement technique and does not fully utilise the admissible distortion within the rate-distortion optimisation. This paper presents a novel distortion measurement technique based on arc-length-parameterisation (DMALP) within the vertex-based shape coding framework. Experimental results vindicate its superior performance over the existing geometric distortion measurement techniques.
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