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IIR-Based ${rm DT}{cal C}{rm WTs}$ With Improved Analyticity and Frequency Selectivity

机译:基于IIR的$ {rm DT} {cal C} {rm WTs} $具有更高的分析能力和频率选择性

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摘要

In this paper, a new class of ${rm DT}{cal C}{rm WTs}$ with improved analyticity and frequency selectivity is proposed by using general IIR filters with numerator and denominator of different degree. In the common-factor technique proposed by Selesnick, the maximally flat allpass filter was used to satisfy the half-sample delay condition. Thus, to improve the analyticity of complex wavelets, we present a method for designing allpass filters with the specified degree of flatness and equiripple phase response in the approximation band. Furthermore, to improve the frequency selectivity of scaling lowpass filters, we locate the specified number of zeros at $z = -1$ and minimize the stopband error. The design methods proposed in this paper use the well-known Remez exchange algorithm to approximate the equiripple response. Therefore, a set of filter coefficients can be easily obtained by solving the eigenvalue problem. Finally, we investigate the performance on the proposed ${rm DT}{cal C}{rm WTs}$ through several design examples. It is shown that the conventional ${rm DT}{cal C}{rm WTs}$ proposed by Selesnick are only the special cases of ${rm DT}{cal C}{rm WTs}$ proposed in this paper.
机译:在本文中,通过使用具有不同分母和分母的通用IIR滤波器,提出了一种新的具有改进的解析度和频率选择性的$ {rm DT} {cal C} {rm WTs} $。在Selesnick提出的公因子技术中,使用最大平坦的全通滤波器来满足半采样延迟条件。因此,为了提高复杂小波的分析能力,我们提出了一种在近似频带内设计具有指定平坦度和等波纹相位响应的全通滤波器的方法。此外,为了提高定标低通滤波器的频率选择性,我们将指定的零个数定位在$ z = -1 $处,并使阻带误差最小。本文提出的设计方法使用著名的Remez交换算法来近似等波纹响应。因此,通过解决特征值问题,可以容易地获得一组滤波器系数。最后,我们通过几个设计示例研究了建议的$ {rm DT} {cal C} {rm WTs} $的性能。结果表明,Selesnick提出的常规$ {rm DT} {cal C} {rm WTs} $只是本文提出的$ {rm DT} {cal C} {rm WTs} $的特例。

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