Optimal vector pyramidal and subband decompositions for the coding of multichannel signals

D. Tzovaras, M. Strintzis
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引用次数: 1

Abstract

Filters are determined which achieve optimal construction of multiresolution vector sequences by minimizing the variance of the error signals between successive pyramid levels. A measure of the entropy reduction achieved by the pyramid is in this way maximized. Further, the filters are also determined which minimize the error committed when only the low resolution vector signal is retained from a multi-channel perfect reconstruction vector filter bank. The effect of this is to ensure that the lower-resolution image produced by the primary subband bears maximum resemblance to the input image. In both settings, it is assumed that additive transmission noise corrupts the downsampled signal prior to the synthesis stage. It is seen that under noiseless or lossless transmission conditions, the two above families of optimal analysis and synthesis filters coincide. The results are evaluated experimentally for the vector coding of the DCT coefficients.
多通道信号编码的最优矢量锥体和子带分解
通过最小化连续金字塔层之间误差信号的方差,确定了实现多分辨率矢量序列最优构造的滤波器。通过这种方式,金字塔实现的熵减少的一种度量是最大化的。此外,还确定了当从多通道完全重构向量滤波器组中仅保留低分辨率矢量信号时所犯的错误最小化的滤波器。这样做的效果是确保由主子带产生的低分辨率图像与输入图像具有最大的相似性。在这两种情况下,假设附加传输噪声在合成阶段之前破坏了下采样信号。可见,在无噪声或无损传输条件下,上述两类最优分析滤波器和综合滤波器是一致的。实验结果验证了DCT系数矢量编码的有效性。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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