无乘法器可调分数延迟全通滤波器的设计与实现

J. Yli-Kaakinen, T. Saramäki
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引用次数: 4

摘要

本文描述了一种求可调分数延迟(AFD)全通滤波器的无乘法器系数表示的算法。优化分为三个基本步骤。首先,使用简单的设计方案生成初始滤波器。其次,将该滤波器作为非线性优化算法的启动解,用于确定无限精度系数的参数空间。这个空间包括过滤器满足给定条件的可行空间。第三步涉及到在这个空间中找到离散系数值,使得到的过滤器符合最简单的系数表示形式的标准。举例说明了所提出的综合方案的效率。此外,将无乘法器的AFD全通滤波器的性能和复杂度与Vesma和Saramaki(1997)采用改进的Farrow结构实现的无乘法器有限脉冲响应滤波器进行了比较。这个比较表明,与使用修改后的Farrow结构实现的过滤器相比,结果过滤器的加法器数量在最好的情况下少于50%。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Design and implementation of multiplierless adjustable fractional-delay all-pass filters
This paper describes an algorithm for finding the multiplierless coefficient representations for adjustable fractional-delay (AFD) all-pass filters. The optimization is performed in three basic steps. First, an initial filter is generated using a simple design scheme. Second, this filter is used as a start-up solution for the nonlinear optimization algorithm which is employed for determining a parameter space of the infinite-precision coefficients. This space includes the feasible space where the filter meets the given criteria. The third step involves finding the discrete coefficient values in this space so that the resulting filter meets the criteria with the simplest coefficient representation forms. Examples are included for illustrating the efficiency of the proposed synthesis scheme. In addition, the performance and the complexity of the multiplierless AFD all-pass filters are compared with those of the multiplierless AFD finite-impulse response filters implemented using the modified Farrow structure proposed by Vesma and Saramaki (1997). This comparison shows that the number of adders for the resulting filters are in the best case less than 50 percent compared with those implemented using the modified Farrow structure.
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