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Two-Rate Based Low-Complexity Variable Fractional-Delay FIR Filter Structures

机译:基于二速率的低复杂度可变分数延迟FIR滤波器结构

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This paper considers two-rate based structures for variable fractional-delay (VFD) finite-length impulse response (FIR) filters. They are single-rate structures but derived through a two-rate approach. The basic structure considered hitherto utilizes a regular half-band (HB) linear-phase filter and the Farrow structure with linear-phase subfilters. Especially for wide-band specifications, this structure is computationally efficient because most of the overall arithmetic complexity is due to the HB filter which is common to all Farrow-structure subfilters. This paper extends and generalizes existing results. Firstly, frequency-response masking (FRM) HB filters are utilized which offer further complexity reductions. Secondly, both linear-phase and low-delay subfilters are treated and combined which offers trade-offs between the complexity, delay, and magnitude response overshoot which is typical for low-delay filters. Thirdly, the HB filter is replaced by a general filter which enables additional frequency-response constraints in the upper frequency band which normally is treated as a don't-care band. Wide-band design examples (90, 95, and 98% of the Nyquist band) reveal arithmetic complexity savings between some 20 and 85% compared with other structures, including infinite-length impulse response structures. Hence, the VFD filter structures proposed in this paper exhibit the lowest arithmetic complexity among all hitherto published VFD filter structures.
机译:本文考虑了基于二速率的可变分数延迟(VFD)有限长度脉冲响应(FIR)滤波器的结构。它们是单速率结构,但是是通过双速率方法得出的。迄今为止考虑的基本结构利用了常规的半带(HB)线性相位滤波器,并利用了带有线性相位子滤波器的Farrow结构。特别是对于宽带规范,这种结构在计算上是有效的,因为大多数总体算术复杂性是由所有Farrow结构子滤波器通用的HB滤波器引起的。本文扩展并概括了现有结果。首先,利用了频率响应屏蔽(FRM)HB滤波器,可进一步降低复杂度。其次,线性相位滤波器和低延迟子滤波器都经过处理和组合,从而在复杂性,延迟和幅度响应过冲之间进行了折衷,这是低延迟滤波器的典型特征。第三,用通用滤波器代替HB滤波器,它可以在通常被视为无关频带的较高频带中实现附加的频率响应约束。宽带设计示例(奈奎斯特频带的90%,95%和98%)显示出与包括无限长脉冲响应结构在内的其他结构相比,算术复杂度节省了约20%至85%。因此,本文提出的VFD滤波器结构在所有迄今为止公开的VFD滤波器结构中展现出最低的算术复杂度。

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