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A Hybrid Admissible Distortion Checking Algorithm for the B-Spline-Based Operational Rate-Distortion Optimal Shape Coding

机译:基于B样条的工作率失真最优形状编码的混合容许失真检查算法

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Existing distortion measurement using chord-length parameterization (DMCLP) is fast but results in the extra bit-rate problem. In contrast, the up to date accurate distortion measurement using analytical model (ADMAM) can achieve the smallest bit-rate but is very time consuming. It motivates us to develop a hybrid admissible checking algorithm that can take full use of each advantage. Observing that the value of DMCLP is always no less than that of ADMAM, we develop a hybrid distortion checking algorithm that evokes ADMAM if and only if the DMCLP value of associate contour point exceeds the admissible distortion. Theoretical analyses and experimental results demonstrate that our proposal can save up to 48% execution time compared with the ADMAM checking algorithm while maintains the smallest bit-rate property. Moreover, we discover and explain that its reduced execution time com-pared with the ADMAM checking algorithm is increasing while its extra execution time compared with DMCLP checking algorithm is decreasing toward zero as the admissible distortion increases.
机译:使用弦长参数化(DMCLP)进行的现有失真测量速度很快,但会导致额外的比特率问题。相反,使用分析模型(ADMAM)进行的最新精确失真测量可以实现最小的比特率,但非常耗时。它激励我们开发一种混合的可允许检查算法,该算法可以充分利用每个优点。观察到DMCLP的值始终不小于ADMAM的值,我们开发了一种混合失真检查算法,当且仅当关联轮廓点的DMCLP值超过允许的失真时,才会调用ADMAM。理论分析和实验结果表明,与ADMAM检查算法相比,我们的建议最多可节省48%的执行时间,同时保持最小的比特率属性。此外,我们发现并解释说,随着容许失真的增加,与ADMAM检查算法相比,其减少的执行时间正在增加,而与DMCLP检查算法相比,其额外的执行时间则向零减少。

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