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A new approach for the design of digital frequency selective FIR filters using an FPA-based algorithm

机译:使用基于FPA的算法设计数字频率选择性FIR滤波器的新方法

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Efficient digital filter design is an essential signal processing task. Finite Impulse Response (FIR) filters are used in many applications due to its properties of linear phase and frequency stability. Most traditional design methods suffer from the problem of insufficient control over the frequency response of the designed filter. For this reason, the use of a recently developed optimisation technique called flowers pollination algorithm (FPA), -based on the natural process of pollination of flowers-along with a novel multiple fitness function, is proposed in order to obtain optimised filter coefficients that best approximate ideal specifications. Results have been compared to both traditional methods (mainly windowing and the Parks-McClellan algorithm) as well as to several nature-inspired schemes. Finally, processing of a real EEG signal is used to quantitatively evaluate performance of designed filters. Numerical results show that our method achieves better fit to desired filter specifications, a 5 - 10 times larger attenuation in the stop band and a narrower transition band, at the expense of slightly increasing the pass-band ripple (5 - 15%) in 3 out of 4 of the cases. (C) 2018 Elsevier Ltd. All rights reserved.
机译:高效的数字滤波器设计是必不可少的信号处理任务。有限脉冲响应(FIR)滤波器由于其线性相位和频率稳定性的特性而在许多应用中使用。大多数传统的设计方法都存在着对所设计的滤波器的频率响应控制不充分的问题。因此,为了获得最佳的最佳滤波系数,建议使用最近开发的优化技术,称为花授粉算法(FPA),该技术基于花的自然授粉过程以及新颖的多重适应度函数。近似理想规格。将结果与传统方法(主要是加窗和Parks-McClellan算法)以及几种自然启发方案进行了比较。最后,对实际EEG信号的处理用于定量评估设计滤波器的性能。数值结果表明,我们的方法可以更好地适应所需的滤波器规格,阻带衰减为5-10倍,过渡带更窄,但代价是通带纹波稍微增加(5-15%)3在4个案例中。 (C)2018 Elsevier Ltd.保留所有权利。

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