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Optimal construction of subband coders using Lloyd-Max quantizers

机译:使用Lloyd-Max量化器优化子带编码器的构造

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摘要

A new method is presented for the analysis of the effects of Lloyd-Max quantization in subband filterbanks and for the optimal design of such filterbanks. A rigorous statistical model of a vector Lloyd-Max quantizer is established first, consisting of a linear time-invariant filter followed by additive noise uncorrelated/with the input. On the basis of this model, an expression for this variance of the error of a subband coder using Lloyd-Max quantizers is explicitly determined. Given analysis filters that statistically separate the subbands, it is shown that this variance is minimized if the synthesis filters are chosen, which mould achieve perfect reconstruction in lossless coding. The globally optimum of such a filterbank, minimizing the coder error variance, is further obtained by proper choice of its analysis filters. An alternative design method is also evaluated and optimized. In this, the errors correlated with the signal are set to zero, leaving a random error residue uncorrelated with the signal. This design method is optimized by choosing the analysis filters so as to minimize the random error variance. The results are evaluated experimentally in the realistic setting of a logarithmically split subband image coding scheme.
机译:提出了一种新的方法,用于分析子带滤波器组中的Lloyd-Max量化的效果以及这种滤波器组的最佳设计。首先建立矢量Lloyd-Max量化器的严格统计模型,该模型由线性时不变滤波器组成,其后是与输入不相关/与输入不相关的加性噪声​​。在该模型的基础上,明确确定了使用劳埃德-最大量化器的子带编码器的这种误差方差的表达式。给定分析滤波器统计上地将子带分开,可以证明,如果选择了合成滤波器,则这种方差将最小化,从而可以在无损编码中实现完美的重构。通过适当选择其分析滤波器,可以进一步获得使滤波器误差方差最小的这种滤波器组的全局最优。还评估和优化了另一种设计方法。这样,与信号相关的误差被设置为零,从而留下了与信号不相关的随机误差残差。通过选择分析滤波器来优化此设计方法,以使随机误差方差最小。在对数分割的子带图像编码方案的实际设置中,对结果进行了实验评估。

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