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Realization of High Accuracy 2-D Variable IIR Digital Filters

机译:高精度二维可变IIR数字滤波器的实现

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摘要

This paper proposes a design method of 2-D variable IIR digital filters with high frequency tuning accuracy. In the proposed method, a parallel complex allpass structure is used as the prototype structure of the 2-D variable digital filters in order to obtain low sensitivity characteristic. Because the proposed 2-D variable digital filter is composed of first-order complex allpass sections connected in parallel, the proposed variable digital filter possesses several advantages such as low sensitivity characteristic in the passband, simple stability monitoring and high parallelism. In order to improve the frequency tuning accuracy of the proposed variable digital filter, each first-order complex allpass section is substituted by a new first-order complex allpass section with low sensitivity characteristic. Moreover, the coefficient sensitivity analysis of a 2-D parallel complex all-pass structure is presented. Numerical examples show that the proposed 2-D variable IIR digital filter has high tuning accuracy under the finite coefficient wordlength.
机译:本文提出了一种具有高频调谐精度的二维可变IIR数字滤波器的设计方法。在所提出的方法中,并行复杂的全通结构被用作二维可变数字滤波器的原型结构,以获得低灵敏度特性。由于所提出的2-D可变数字滤波器由并联连接的一阶复数全通部分组成,因此所提出的可变数字滤波器具有诸如通带中的低灵敏度特性,简单的稳定性监控和高并行度的多个优点。为了提高所提出的可变数字滤波器的频率调谐精度,将每个一阶复数全通部分替换为具有低灵敏度特性的新的一阶复数全通部分。此外,提出了二维并联复式全通结构的系数灵敏度分析。数值算例表明,所提出的二维可变IIR数字滤波器在有限系数字长下具有较高的调谐精度。

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