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A progressive transmission image coder using linear phase uniform filterbanks as block transforms

机译:使用线性相位均匀滤波器组作为块变换的渐进式传输图像编码器

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This paper presents a novel image coding scheme using M-channel linear phase perfect reconstruction filterbanks (LPPRFBs) in the embedded zerotree wavelet (EZW) framework introduced by Shapiro (1993). The innovation here is to replace the EZWs dyadic wavelet transform by M-channel uniform-band maximally decimated LPPRFBs, which offer finer frequency spectrum partitioning and higher energy compaction. The transform stage can now be implemented as a block transform which supports parallel processing and facilitates region-of-interest coding/decoding. For hardware implementation, the transform boasts efficient lattice structures, which employ a minimal number of delay elements and are robust under the quantization of lattice coefficients. The resulting compression algorithm also retains all the attractive properties of the EZW coder and its variations such as progressive image transmission, embedded quantization, exact bit rate control, and idempotency. Despite its simplicity, our new coder outperforms some of the best image coders published previously in the literature, for almost all test images (especially natural, hard-to-code ones) at almost all bit rates.
机译:本文提出了一种新的图像编码方案,该方案在Shapiro(1993)提出的嵌入式零树小波(EZW)框架中使用M通道线性相位完美重构滤波器组(LPPRFB)。这里的创新是用M通道均匀带最大抽取LPPRFB代替EZWs二进小波变换,这提供了更精细的频谱划分和更高的能量压缩。现在可以将变换阶段实现为支持并行处理并促进感兴趣区域编码/解码的块变换。对于硬件实现,该转换拥有高效的晶格结构,该结构采用最少数量的延迟元素,并且在晶格系数的量化下具有鲁棒性。最终的压缩算法还保留了EZW编码器的所有吸引人的特性及其变化,例如渐进式图像传输,嵌入式量化,精确的比特率控制和幂等性。尽管它很简单,但对于几乎所有比特率的几乎所有测试图像(尤其是自然的,难以编码的图像),我们的新编码器都优于以前文献中出版的一些最佳图像编码器。

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