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Image coding using wavelets based on perfect reconstruction IIRfilter banks

机译:基于完美重构IIRfilter库的小波图像编码

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This paper re-examines modulated polyphase filter banks which use reverse-time subfilters to achieve perfect reconstruction and studies their performance for image coding when used to form a wavelet decomposition. To code the wavelet coefficients, we use the embedded zerotree wavelet (EZW) algorithm developed by Shapiro (1993) which is reasonably simple and yet achieves very good rate-distortion performance. The problem of eliminating filter transients is thoroughly studied and optimal results are derived in both the absence and presence of subband coefficient quantization. Using this analysis as a starting point, we develop a new method of coding the filter states (required to eliminate edge transients) for transmission to the receiver which efficiently exploits interscale redundancy and is easily incorporated into the zerotree algorithm. Comparing this direct transmission method to circular convolution, we find that it achieves superior rate-distortion performance in a wide range of cases. Coding comparisons between two infinite impulse response (IIR) wavelets and a number of biorthogonal wavelets are presented. These comparisons indicate that the performance of the polyphase allpass wavelet is comparable to that of the best finite impulse response (FIR) biorthogonal wavelets with considerably reduced computational complexity
机译:本文重新研究了使用逆时子滤波器实现完美重构的调制多相滤波器组,并研究了用于形成小波分解的图像编码性能。为了编码小波系数,我们使用了Shapiro(1993)开发的嵌入式零树小波(EZW)算法,该算法相当简单,但是却获得了很好的速率失真性能。彻底研究了消除滤波器瞬变的问题,并在不存在和存在子带系数量化的情况下得出了最佳结果。以这一分析为起点,我们开发了一种对滤波器状态进行编码(要求消除边缘瞬变)以传输至接收器的新方法,该方法可以有效利用尺度间冗余,并且可以轻松地纳入零树算法中。将这种直接传输方法与圆形卷积进行比较,我们发现它在各种情况下均具有出色的速率失真性能。提出了两个无限冲激响应(IIR)小波和许多双正交小波之间的编码比较。这些比较表明,多相全通小波的性能与最佳有限冲激响应(FIR)双正交小波的性能相当,并且计算复杂度大大降低

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