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The optimum space-frequency partition for subband image coding in a rate-distortion sense

机译:率失真意义上的子带图像编码的最佳空频划分

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Subband coding is a powerful means for highly efficient image signal compression. We have proposed the optimum frequency band partition (OFBP) to improve the compression performance of subband image coding. OFBP determines an adaptive partition pattern on the 2-dimensional frequency domain considering the characteristics of an input image under the condition of a small number of subbands. However, the OFBP cannot obtain the optimum partition pattern in terms of rate-distortion sense for image compression. This is caused by the partition pattern being fixed, even if the desired bit rate changes. This paper presents an optimum space-frequency partition (OSFP) as a new OFBP. The optimized factors include the band partition on the 2-dimentional frequency domain, the combination of quantizers within subbands and the pruning of coefficient nodes in each subband (also referred to as the spatial domain partition), are optimized in terms of rate-distortion sense in case of an arbitrary given bit rate budget. Experimental results show the outperformance of several conventional image compression methods by the proposed OSFP coder.
机译:子带编码是用于高效图像信号压缩的强大手段。我们已经提出了最佳频带分区(OFBP)来改善子带图像编码的压缩性能。 OFBP确定在二维频域上的自适应分区图案,考虑在少量子带的条件下的输入图像的特性。然而,在图像压缩的速率失真感测不能获得最佳分区模式。这是由固定的分区模式引起的,即使所需的比特率变化也是如此。本文介绍了一个最佳的空间频率分区(OSFP)作为新的OFBP。优化因子包括在二维频域上的频带分区,子带内的量化器的组合以及每个子带中的系数节点的修剪(也称为空间域分区),在速率失真义方面被优化如果是任意给定比特率预算。实验结果表明,所提出的OSFP编码器,若干常规图像压缩方法的表现优于。

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