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Variable width admissible control point band for vertex based Operational-Rate-Distortion optimal shape coding algorithms

机译:基于顶点的操作率失真最优形状编码算法的变宽允许控制点带

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摘要

Existing vertex-based operational-rate-distortion (ORD) optimal shape coding algorithms use a fixed width admissible control point band (FCB) around the shape boundary as the search space for possible control points. The width of the band however, is fixed and arbitrarily chosen independent of the admissible distortion and shape contour, so it fails to fully exploit the admissible control point band to reduce the bit-rate. This paper proposes a variable width admissible control point band (VCB) where the width associated to each boundary point is dynamically determined from the admissible peak distortion and shape information. In addition, the paper uses an accurate distortion measurement method to overcome a key limitation of existing distortion and tolerance band based methods. Experimental results reveal that both the qualitative and quantitative performance of the existing ORD algorithms are improved by seamlessly integrating the VCB and accurate distortion measuring approach.
机译:现有的基于顶点的运算率失真(ORD)最佳形状编码算法在形状边界周围使用固定宽度的允许控制点带(FCB)作为可能控制点的搜索空间。然而,频带的宽度是固定的,并且与容许的失真和形状轮廓无关地任意选择,因此它不能充分利用容许的控制点频带来降低比特率。本文提出了一个可变宽度允许控制点带(VCB),其中与每个边界点相关的宽度是根据允许峰值畸变和形状信息动态确定的。此外,本文使用一种精确的失真测量方法来克服现有失真和基于公差带的方法的关键局限性。实验结果表明,通过无缝集成VCB和精确的失真测量方法,可以改善现有ORD算法的定性和定量性能。

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