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Two-channel IIR QMF banks with approximately linear-phase analysis and synthesis filters

机译:具有近似线性相位分析和合成滤波器的两通道IIR QMF库

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Perfect linear-phase two-channel QMF banks require the use of finite impulse response (FIR) analysis and synthesis filters. Although they are less expensive and yield superior stopband characteristics, perfect linear phase cannot be achieved with stable infinite impulse response (IIR) filters. Thus, IIR designs usually incorporate a postprocessing equalizer that is optimized to reduce the phase distortion of the entire filter bank. However, the analysis and synthesis filters of such an IIR filter bank are not linear phase. In this paper, a computationally simple method to obtain IIR analysis and synthesis filters that possess negligible phase distortion is presented. The method is based on first applying the balanced reduction procedure to obtain nearly allpass IIR polyphase components and then approximating these with perfect allpass IIR polyphase components. The resulting IIR designs already have only negligible phase distortion. However, if required, further improvement may be achieved through optimization of the filter parameters. For this purpose, a suitable objective function is presented. Bounds for the magnitude and phase errors of the designs are also derived. Design examples indicate that the derived IIR filter banks are more efficient in terms of computational complexity than the FIR prototypes and perfect reconstruction FIR filter banks. Although the PR FIR filter banks when implemented with the one-multiplier lattice structure and IIR filter banks are comparable in terms of computational complexity, the former is very sensitive to coefficient quantization effects.
机译:完美的线性相位两通道QMF库需要使用有限脉冲响应(FIR)分析和综合滤波器。尽管它们价格便宜,并且具有出色的阻带特性,但是使用稳定的无限脉冲响应(IIR)滤波器无法实现完美的线性相位。因此,IIR设计通常包含经过优化的后处理均衡器,以减少整个滤波器组的相位失真。但是,这种IIR滤波器组的分析和合成滤波器不是线性相位。本文提出了一种计算简单的方法来获得IIR分析和具有可忽略不计的相位失真的合成滤波器。该方法的基础是,首先应用平衡降低程序获得几乎全通IIR多相分量,然后用理想的全通IIR多相分量对其进行近似。所得的IIR设计的相位失真已经可以忽略不计。但是,如果需要,可以通过优化滤波器参数来实现进一步的改进。为此,提出了合适的目标函数。还得出了设计幅度和相位误差的界限。设计示例表明,在计算复杂度方面,派生的IIR滤波器组比FIR原型和完善的重构FIR滤波器组更有效。尽管PR FIR滤波器组在采用一乘格子结构时与IIR滤波器组在计算复杂度方面可比,但前者对系数量化效果非常敏感。

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