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首页> 外文期刊>IEEE Transactions on Signal Processing >An $L_1$-Method for the Design of Linear-Phase FIR Digital Filters
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An $L_1$-Method for the Design of Linear-Phase FIR Digital Filters

机译:线性相位FIR数字滤波器设计的$ L_1 $方法

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摘要

This paper considers the design of linear-phase finite impulse response digital filters using an $L_1$ optimality criterion. The motivation for using such filters as well as a mathematical framework for their design is introduced. It is shown that $L_1$ filters possess flat passbands and stopbands while keeping the transition band comparable to that of least-squares filters. The uniqueness of $L_1$-based filters is explored, and an alternation type theorem for the optimal frequency response is derived. An efficient algorithm for calculating the optimal filter coefficients is proposed, which may be viewed as the analogue of the celebrated Remez exchange method. A comparison with other design techniques is made, demonstrating that the $L_1$ approach may be a good alternative in several applications.
机译:本文考虑采用$ L_1 $最优性准则的线性相位有限脉冲响应数字滤波器的设计。介绍了使用此类过滤器的动机以及其设计的数学框架。结果表明,$ L_1 $滤波器具有平坦的通带和阻带,同时保持与最小二乘滤波器相当的过渡带。探索了基于$ L_1 $的滤波器的唯一性,并推导了用于最佳频率响应的交替类型定理。提出了一种计算最优滤波器系数的有效算法,可以将其视为著名的雷米兹交换方法的类似物。与其他设计技术进行了比较,表明$ L_1 $方法在某些应用程序中可能是一个不错的选择。

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