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Closed-form designs of digital fractional order Butterworth filters using discrete transforms

机译:使用离散变换的数字分数阶Butterworth滤波器的闭式设计

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In this paper, closed-form designs of digital fractional order Butterworth (FOB) filters using discrete transform methods are presented. First, the integer-order Butterworth (IOB) filter is reviewed and the design problem of digital FOB filter is described. Then, the discrete cosine transform (DCT), discrete sine transform (DST) and discrete Fourier transform (DFT) are applied to obtain the transfer functions of FIR fractional order Butterworth filters. Because the closed-form designs are obtained, the filter coefficients are easily computed. Next, the variable FOB filter is designed using the Farrow structure and IIR FOB filter is designed by the Prony method. Finally, application examples in the digital image sharpening are studied to demonstrate the effectiveness of proposed FOB filter design approaches.
机译:在本文中,提出了使用离散变换方法的数字分数阶Butterworth(FOB)滤波器的闭式设计。首先,回顾了整数阶巴特沃思(IOB)滤波器,并描述了数字FOB滤波器的设计问题。然后,应用离散余弦变换(DCT),离散正弦变换(DST)和离散傅立叶变换(DFT)获得FIR分数阶Butterworth滤波器的传递函数。由于获得了封闭形式的设计,因此可以轻松计算滤波器系数。接下来,使用Farrow结构设计可变FOB滤波器,并通过Prony方法设计IIR FOB滤波器。最后,研究了在数字图像锐化中的应用实例,以证明所提出的FOB滤波器设计方法的有效性。

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