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Ordering for Embedded Coding of Wavelet Image Data Based on Arbitrary Scalar Quantization Schemes

机译:基于任意标量量化方案的小波图像数据嵌入式编码排序

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Many modern wavelet quantization schemes specify wavelet coefficient step sizes as continuous functions of an input step-size selection criterion; rate control is achieved by selecting an appropriate set of step sizes. In embedded wavelet coders, however, rate control is achieved simply by truncating the coded bit stream at the desired rate. The order in which wavelet data are coded implicitly controls quantization step sizes applied to create the reconstructed image. Since these step sizes are effectively discontinuous, piecewise-constant functions of rate, this paper examines the problem of designing a coding order for such a coder, guided by a quantization scheme where step sizes evolve continuously with rate. In particular, it formulates an optimization problem that minimizes the average relative difference between the piecewise-constant implicit step sizes associated with a layered coding strategy and the smooth step sizes given by a quantization scheme. The solution to this problem implies a coding order. Elegant, near-optimal solutions are presented to optimize step sizes over a variety of regions of rates, either continuous or discrete. This method can be used to create layers of coded data using any scalar quantization scheme combined with any wavelet bit-plane coder. It is illustrated using a variety of state-of-the-art coders and quantization schemes. In addition, the proposed method is verified with objective and subjective testing
机译:许多现代的小波量化方案都将小波系数步长指定为输入步长选择标准的连续函数。通过选择一组合适的步长来实现速率控制。然而,在嵌入式小波编码器中,仅通过以期望的速率截断编码的比特流就可以实现速率控制。小波数据的编码顺序隐式控制着量化步长,该步长适用于创建重建图像。由于这些步长实际上是不连续的,速率的分段常数函数,因此本文研究了在量化方案的指导下设计这种编码器的编码顺序的问题,其中步长随速率连续变化。特别是,它提出了一个优化问题,该问题使与分层编码策略相关的分段常数隐式步长与量化方案给出的平滑步长之间的平均相对差最小。该问题的解决方案意味着编码顺序。提出了优雅,接近最佳的解决方案,以在连续或离散速率的各种速率区域上优化步长。该方法可用于结合任何小波位平面编码器使用任何标量量化方案来创建编码数据层。使用各种最新的编码器和量化方案对其进行了说明。此外,通过主观和主观测试验证了该方法的有效性。

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