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New method for designing two-channel causal stable IIR perfect reconstruction filter banks and wavelet bases

机译:设计双通道因果稳定IIR完全重构滤波器组和小波基的新方法

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摘要

A new method for designing two-channel causal stable IIR PR filter banks and wavelet bases is proposed. It is based on the structure previously proposed by Phoong et al. (1995). Such a filter bank is parameterized by two functions α(z) and β(z), which can be chosen as an all-pass function to obtain IIR filterbanks with very high stopband attenuation. One of the problems with this choice is that a bump of about 4 dB always exists near the transition band of the analysis and synthesis filters. The stopband attenuation of the high-pass analysis filter is also 10 dB lower than that of the low-pass filter. By choosing β(z) and α(z) as an all-pass function and a type-II linear-phase finite impulse response (FIR) function, respectively, the bumping can be significantly suppressed. In addition, the stopband attenuation of the high-pass filter can be controlled easily. The design problem is formulated as a polynomial approximation problem and is solved efficiently by the Remez exchange algorithm. The extension of this method to the design of a class of IIR wavelet bases is also considered.
机译:提出了一种设计两通道因果稳定IIR PR滤波器组和小波基的新方法。它基于Phoong等人先前提出的结构。 (1995)。可以通过两个函数α(z)和β(z)对这种滤波器组进行参数化,可以将其选择为全通函数以获得具有非常高的阻带衰减的IIR滤波器组。这种选择的问题之一是在分析和合成滤波器的过渡带附近始终存在约4 dB的凸起。高通分析滤波器的阻带衰减也比低通滤波器的阻带衰减低10 dB。通过分别选择β(z)和α(z)作为全通函数和II型线性相位有限冲激响应(FIR)函数,可以显着抑制碰撞。另外,可以容易地控制高通滤波器的阻带衰减。设计问题被表述为多项式逼近问题,并通过Remez交换算法有效解决。还考虑了将该方法扩展到一类IIR小波基的设计。

著录项

  • 作者

    Mao JS; Chan SC; Ho KL;

  • 作者单位
  • 年度 2000
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  • 原文格式 PDF
  • 正文语种 eng
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