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首页> 外文期刊>IEEE Transactions on Signal Processing >Theory of rate-distortion-optimal, constrained filterbanks-application to IIR and FIR biorthogonal designs
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Theory of rate-distortion-optimal, constrained filterbanks-application to IIR and FIR biorthogonal designs

机译:率失真优化理论,受约束滤波器组-在IIR和FIR双正交设计中的应用

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摘要

We design filterbanks that are best matched to input signal statistics in M-channel subband coders, using a rate-distortion criterion. Previous research has shown that unconstrained-length, paraunitary filterbanks optimized under various energy compaction criteria are principal-component filterbanks that satisfy two fundamental properties: total decorrelation and spectral majorization. In this paper, we first demonstrate that the two properties above are not specific to the paraunitary case but are satisfied for a much broader class of design constraints. Our results apply to a broad class of rate-distortion criteria, including the conventional coding gain criterion as a special case. A consequence of these properties is that optimal perfect-reconstruction (PR) filterbanks take the form of the cascade of principal-component filterbanks and a bank of pre- and post-conditioning filters. The proof uses variational techniques and is applicable to a variety of constrained design problems. In the second part of this paper, we apply the theory above to practical filterbank design problems. We give analytical expressions for optimal IIR biorthogonal filterbanks; our analysis validates a conjecture by several researchers. We then derive the asymptotic limit of optimal FIR biorthogonal filterbanks as filter length tends to infinity. The performance loss due to FIR constraints is quantified theoretically and experimentally. The optimal filters are quite different from traditional filters. Finally, a sensitivity analysis is presented.
机译:我们使用速率失真准则设计出与M通道子带编码器中的输入信号统计最匹配的滤波器组。先前的研究表明,在各种能量压缩标准下优化的无约束长度超准滤波器组是满足两个基本属性的总分量滤波器组:总去相关和频谱主化。在本文中,我们首先证明上述两个属性并非特定于准单元情况,但满足了更广泛的一类设计约束条件。我们的结果适用于广泛的速率失真准则,包括作为特殊情况的常规编码增益准则。这些特性的结果是,最佳的完美重建(PR)滤波器组采用主成分滤波器组和预处理和后置滤波器组的级联形式。该证明使用变体技术,并且适用于各种受约束的设计问题。在本文的第二部分,我们将上述理论应用于实际的滤波器组设计问题。我们给出了最佳IIR双正交滤波器组的解析表达式;我们的分析证实了一些研究人员的猜测。然后,当滤波器长度趋于无穷大时,我们得出最佳FIR双正交滤波器组的渐近极限。理论上和实验上都可以量化由于FIR约束而导致的性能损失。最佳滤波器与传统滤波器完全不同。最后,进行了敏感性分析。

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