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Multirate IIR filter structures for arbitrary bandwidths

机译:适用于任意带宽的多速率IIR滤波器结构

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This paper introduces new multirate infinite-length impulse-response (IIR) filter structures for arbitrary bandwidths. The overall filters have the same input and output sample rates. Multirate techniques are only used internally in order to improve the efficiency. The overall filters make use of an IIR filter for the actual filtering, periodic allpass filters for constructing complementary filters, and linear-phase finite-length impulse-response (FIR) filters for the sampling rate alterations. There are the following two main reasons for introducing the new filters: 1) they can be used to obtain so called high-speed IIR filters (i.e., filters able to operate at a high sample rate) with lower complexity than that achievable with single-rate high-speed filters and 2) they can be used to obtain approximately linear-phase filters with substantially lower complexity than that achievable with single-rate filters. The overall filters are designed by separately optimizing a number of linear-phase (possibly half-band) FIR filters, and one IIR filter being realizable as a parallel connection of two allpass filters. Design examples are included illustrating the usefulness of the proposed filters.
机译:本文介绍了针对任意带宽的新型多速率无限长脉冲响应(IIR)滤波器结构。整个滤波器具有相同的输入和输出采样率。多速率技术仅在内部使用,以提高效率。整个滤波器利用IIR滤波器进行实际滤波,使用周期性全通滤波器构成互补滤波器,并使用线性相位有限长度冲激响应(FIR)滤波器进行采样率更改。引入新滤波器的主要原因有两个:1)它们可用于获得所谓的高速IIR滤波器(即,能够以高采样率运行的滤波器),其复杂度低于单滤波器实现的复杂度。 2)它们可以用来获得近似线性相位的滤波器,其复杂度大大低于单速率滤波器所能达到的复杂度。通过分别优化多个线性相位(可能是半带)FIR滤波器来设计整个滤波器,并且一个IIR滤波器可实现为两个全通滤波器的并联连接。包含设计示例,这些示例说明了所提出的过滤器的实用性。

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