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A novel algorithm for the design of selective FIR filters with arbitrary amplitude and phase characteristics

机译:设计具有任意幅度和相位特性的选择性FIR滤波器的新算法

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In this paper, a novel analytic technique is presented for the design of finite impulse response digital filters with simultaneous amplitude and phase requirements. The design process relies on the interpolation concept and is based on the generation of arbitrary amplitude and phase polynomials. The new class of FIR filters lays in between the exact linear phase filters at all frequencies and the minimum phase FIR filters based on the amplitude approximation only. It interpolates arbitrary (e.g., linear) phase response in the passband and arbitrary amplitude characteristics in pass- and stopbands. The introduced class of filters can be used on the amplitude and phase equalization of both FIR and IIR digital filters. Illustrative examples are included in order to investigate the main properties of these filters and to demonstrate that the proposed design method leads to a significant saving in the arithmetic computations. (c) 2005 Published by Elsevier Inc.
机译:本文提出了一种新颖的解析技术,用于同时具有幅度和相位要求的有限脉冲响应数字滤波器的设计。设计过程依赖于插值概念,并基于任意幅度和相位多项式的生成。新型FIR滤波器介于所有频率下的精确线性相位滤波器和仅基于幅度近似的最小相位FIR滤波器之间。它在通带内插任意(例如线性)相位响应,并在通带和阻带内插任意幅度特性。引入的滤波器类别可用于FIR和IIR数字滤波器的幅度和相位均衡。为了说明这些滤波器的主要特性,并证明所提出的设计方法可显着节省算术计算,还包括了说明性示例。 (c)2005年由Elsevier Inc.发布。

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