拉格朗日型可变分数延迟数字滤波器的无瞬变结构

Parinya Soontornwong, S. Chivapreecha, C. Pradabpet
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引用次数: 1

摘要

提出了一种新的拉格朗日型可变分数延迟(VFD)滤波器结构。从离散帕斯卡变换(DPT)及其帕斯卡插值出发,提出了一种新的结构。该结构的计算复杂度与泰勒级数结构相同,是VFD滤波器阶数的线性函数,也是模结构。Taylor级数结构存在由于延迟参数变化而引起的暂态误差,但该结构可以在线调整延迟参数而不产生暂态误差。因此,无瞬变结构将成为拉格朗日型VFD滤波器结构的新选择,适合于数字接收机中采样率转换(SRC)和定时恢复等实时应用。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
A transient-free structure for Lagrange-type variable fractional-delay digital filter
This paper presents a new structure for Lagrange-type variable fractional-delay (VFD) filter. A new structure is formulated from discrete Pascal transform (DPT) and its Pascal interpolation. The computational complexity which obtained from proposed structure is linear function of VFD filter order as same as the so-called Taylor's series structure and also be modular structure. Unfortunately, Taylor's series structure is suffered from transient error that caused from changing delay parameter but the proposed structure can online adjust delay parameter without transient error. Therefore, a transient-free structure will be the new choice for Lagrange-type VFD filters structure which is suitable for real-time application such as sampling rate conversion (SRC) and timing recovery in digital receiver.
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