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Closed-form design of maximally flat FIR fractional delay filters using interlaced sampling method

机译:使用隔行采样方法的最大平坦FIR分数延迟滤波器的闭式设计

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In this paper, we investigate an implementation of finite impulse response (FIR) fractional delay (FD) filters using interlaced sampling (IS) method. In the design of FIR FD filters with real impulse responses, it is hard for the FD filters to achieve an accurate approximation to the desired frequency response within the high frequency band. The IS structure provides a possible solution to this issue. We solve the closed-form expressions of the impulse responses of the IS structure in maximally flat (MF) error criterion. In addition, we also propose another design in time domain, called the polynomial invariance (PI) method. Using the PI method, we solve the impulse response in closed form and show that the PI design in time domain is identical to the MF result in frequency domain. In the design examples, we compare the proposed design with other existing MF FD filters, and find that the proposed design provides a good approximation to the desired frequency response over the whole frequency band.
机译:在本文中,我们使用隔行采样(IS)方法研究有限脉冲响应(FIR)分数延迟(FD)滤波器的实现。在具有实际冲激响应的FIR FD滤波器的设计中,FD滤波器很难在高频段内达到所需频率响应的精确近似值。 IS结构为该问题提供了一种可能的解决方案。我们以最大平坦(MF)误差准则求解IS结构的脉冲响应的闭式表达式。此外,我们还提出了另一种时域设计,称为多项式不变性(PI)方法。使用PI方法,我们解决了封闭形式的脉冲响应,并表明时域的PI设计与频域的MF结果相同。在设计示例中,我们将提出的设计与其他现有的MF FD滤波器进行了比较,发现提出的设计为整个频带上的所需频率响应提供了良好的近似值。

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