Design of allpass-based IIR multi-notch filters with identical pole radiuses

I. Krstić
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Abstract

A design method for the allpass-based infinite impulse response multi-notch filters with identical pole radiuses is derived in the paper. According to the standard procedure when design of the allpass-based filters is considered, the multi-notch filters? magnitude response specifications are first formulated as the phase response specifications of the corresponding allpass filter. Then, for the specified identical pole radiuses, it is shown that unknown allpass filter coefficients can be obtained determined from the square system of linear equations. On the other hand, the minimum value of the pole radius, such that specifications of the the magnitude response are satisfied in all passbands, can be determined using the bisection method. Results of comparison with some of the existing design methods lead to the conclusion that proposed filters have higher area under the squared passbands magnitude response compared to filters with the same maximum pole radius. Furthermore, utilization of the proposed method can result in transfer functions that have the lowest possible maximum pole radius.
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具有相同极点半径的全通型IIR多陷波滤波器设计
本文推导了一种极点半径相同的全通无限脉冲响应多陷波滤波器的设计方法。根据设计全通滤波器时的标准程序,多陷波滤波器?幅度响应规格首先表示为相应全通滤波器的相位响应规格。然后,在给定相同极点半径的情况下,由线性方程组的平方系统确定未知的全通滤波器系数。另一方面,极点半径的最小值可以用等分法确定,使所有通带都满足幅值响应的要求。与一些现有设计方法的比较结果表明,与具有相同最大极点半径的滤波器相比,所提出的滤波器具有更高的平方通带幅度响应面积。此外,利用所提出的方法可以产生具有最小可能最大极点半径的传递函数。
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来源期刊
Serbian Journal of Electrical Engineering
Serbian Journal of Electrical Engineering Energy-Energy Engineering and Power Technology
CiteScore
1.30
自引率
0.00%
发文量
16
审稿时长
25 weeks
期刊介绍: The main aims of the Journal are to publish peer review papers giving results of the fundamental and applied research in the field of electrical engineering. The Journal covers a wide scope of problems in the following scientific fields: Applied and Theoretical Electromagnetics, Instrumentation and Measurement, Power Engineering, Power Systems, Electrical Machines, Electrical Drives, Electronics, Telecommunications, Computer Engineering, Automatic Control and Systems, Mechatronics, Electrical Materials, Information Technologies, Engineering Mathematics, etc.
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