首页> 外文期刊>The mediterranean journal of electronics and communications >DESIGNING LINEAR-PHASE FIR FILTERS BASED ON EXTENDED LEAST SQUARE ERRORS
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DESIGNING LINEAR-PHASE FIR FILTERS BASED ON EXTENDED LEAST SQUARE ERRORS

机译:基于扩展最小二乘误差设计线性相位FIR滤波器

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摘要

In this paper a new iterative algorithm based on least square error method (LS) called extended LS (ELSE) is proposed to automatically design linear-phase FIR filters with any desired frequency response (DFR) and limited deviations. Minimizing a cost function that is defined based on the desired filter specifications including DFR and threshold of acceptable deviations (TAD), is the main idea of ELSE. In contrast to the other typical filter designing methods, defining the transition bands is not necessary in ELSE. Moreover, ELSE regulates the convergence rate by an automated approach that was utilized in neural networks; and it approximates the filter degree using an increasing-decreasing approach. In simulations, ELSE shows significant performance compared to LS though it may be more computationally complex. Also, it supplies the application demands in all of the case studies.
机译:在本文中,提出了一种基于最小二乘误差法(LS)的迭代算法,称为扩展LS(ELSE),以自动设计具有任何所需频率响应(DFR)和有限偏差的线性相位FIR滤波器。 ELSE的主要思想是最小化基于所需滤波器规格(包括DFR和可接受偏差阈值(TAD))定义的成本函数。与其他典型的滤波器设计方法相比,在ELSE中不需要定义过渡带。此外,ELSE通过一种在神经网络中使用的自动化方法来调节收敛速度。并使用增减法近似过滤度。在仿真中,ELSE与LS相比显示出显着的性能,尽管它在计算上可能更加复杂。此外,它还提供了所有案例研究中的应用需求。

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