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Efficient audio coding using perfect reconstruction noncausal IIRfilter banks

机译:使用完美重构非因果IIRfilter库的高效音频编码

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We consider the problem of implementing perfect reconstruction modulated polyphase filter banks having infinite impulse response (IIR) subfilters in systems that must process infinite length 1-D inputs. This task is complicated by the fact that the synthesis bank needed to ensure perfect reconstruction in such a system generally has noncausal or reverse-time filter sections. To overcome this limitation, we develop a number of unique buffering schemes that make possible the implementation of such reverse-time filters with infinite length signals. For the important special case when the polyphase subfilters are allpass, we also present a method that allows for very efficient implementation of tree-structured filter banks and wavelet transforms. We then describe a wideband coding algorithm based largely on work done by Lokhoff (1991) and Johnston (1980, 1988). Using this algorithm, we compare the performance of IIR filter banks with that of more conventional pseudo-QMF and tree-structured QMF banks. The results of these comparisons indicate that one of our filter banks-a tree-structured allpass bank-achieves slightly better performance than equivalent FIR banks in terms of rate and distortion (both objectively and subjectively measured) while requiring lower computational complexity
机译:我们考虑在必须处理无限长一维输入的系统中实现具有无限冲激响应(IIR)子滤波器的完美重构调制多相滤波器组的问题。由于在这种系统中确保完美重建所需的综合库通常具有非因果或逆时滤波器部分,因此使该任务变得复杂。为了克服这一限制,我们开发了许多独特的缓冲方案,这些方案可以实现无限长信号的这种逆时滤波器。对于多相子滤波器全通的重要特殊情况,我们还提出了一种方法,该方法可以非常有效地实现树状结构的滤波器组和小波变换。然后,我们主要基于Lokhoff(1991)和Johnston(1980,1988)所做的工作来描述宽带编码算法。使用此算法,我们将IIR滤波器组的性能与更常规的伪QMF和树型QMF库的性能进行了比较。这些比较的结果表明,我们的一个滤波器组(树状全通滤波器组)在速率和失真(客观和主观测量)方面均比等效FIR组略好于性能,同时需要较低的计算复杂度

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