Efficient implementation of odd-order lagrange-type variable fractional-delay digital filters

T. Deng
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Abstract

Lagrange-type variable fractional-delay (VFD) digital filters can be directly implemented as the well-known Farrow structure, but the subfilter coefficients are not symmetric or anti-symmetric. This paper presents a method for transforming an odd-order Lagrange-type VFD filter into a new one whose more than half subfilters have symmetric or anti-symmetric coefficients, which leads to an efficient implementation that reduces the computational complexity required in the VFD filtering process and saves hardware cost for storing independent subfilter coefficients. Several interesting symmetric properties of the resulting subfilter coefficients are rigorously proved and also illustrated through examples.
奇阶拉格朗日型可变分数延迟数字滤波器的高效实现
拉格朗日型可变分数延迟(VFD)数字滤波器可以直接实现为众所周知的法罗结构,但子滤波器系数不对称或反对称。本文提出了一种将奇阶拉格朗日型VFD滤波器转换成一半以上子滤波器具有对称或反对称系数的新滤波器的方法,从而有效地降低了VFD滤波过程中所需的计算量,节省了存储独立子滤波器系数的硬件成本。本文严格证明了所得子滤波器系数的几个有趣的对称性质,并通过实例加以说明。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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