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Design of doubly-complementary IIR digital filters using a single complex allpass filter, with multirate applications

机译:使用单个复数全通滤波器和多速率应用设计双互补IIR数字滤波器

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摘要

It is shown that a large class of real-coefficient doubly-complementary IIR transfer function pairs can be implemented by means of a single complex allpass filter. For a real input sequence, the real part of the output sequence corresponds to the output of one of the transfer functions G(z) (for example, lowpass), whereas the imaginary part of the output sequence corresponds to its "complementary" filter H(z)(for example, highpass). The resulting implementation is structurally lossless, and hence the implementations of G(z) and H(z) have very low passband sensitivity. Numerical design examples are included, and a typical numerical example shows that the new implementation with 4 bits per multiplier is considerably better than a direct form implementation with 9 bits per multiplier. Multirate filter bank applications (quadrature mirror filtering) are outlined.
机译:结果表明,可以通过单个复数全通滤波器来实现一大类实系数双互补IIR传递函数对。对于实数输入序列,输出序列的实部对应于传递函数G(z)(例如,低通)之一的输出,而输出序列的虚部对应于其“互补”滤波器H (z)(例如,高通)。所得的实现在结构上无损,因此G(z)和H(z)的实现具有非常低的通带灵敏度。其中包括数值设计示例,并且一个典型的数值示例表明,每个乘法器具有4位的新实现比每个乘法器具有9位的直接形式实现要好得多。概述了多速率滤波器组的应用(正交镜像滤波)。

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