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Lowpass delay filters with flat magnitude and group delay constraints

机译:具有平坦幅度和群延迟约束的低通延迟滤波器

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This paper describes the design of finite impulse response (FIR) delay filters that minimize a squared error and have prescribed number of zeros at /spl omega/=/spl pi/ and prescribed magnitude and group delay flatness at /spl omega/=0. An important special case is the design of least squared error lowpass filters with prescribed flatness constraints and zeros at /spl omega/=/spl pi/. Even though the flatness constraints are in general nonlinear functions of the filter coefficients, we show the remarkable fact that for a subclass of the filters a simple orthogonal projection of least squared error filters onto a special linear subspace determined via Baher (1982) filters gives the solution. The paper also introduces the notion of delay filters that are high-order approximations to the ideal delay and establishes their equivalence to Baher filters. This connection gives novel elementary derivations of Baher filters and their properties. Matlab programs are provided at the end of the paper for the design of filters described in this paper.
机译:本文介绍了有限脉冲响应(FIR)延迟滤波器的设计,该滤波器使平方误差最小,并且在/ spl omega / = / spl pi /处具有规定的零个数,在/ spl omega / = 0处具有规定的幅度和群延迟平坦度。一个重要的特殊情况是设计最小平方误差低通滤波器,该滤波器具有规定的平坦度约束,并且在/ spl omega / = / spl pi /处为零。尽管平坦度约束通常是滤波器系数的非线性函数,但我们证明了一个显着的事实,即对于滤波器的子类,最小二乘误差滤波器的简单正交投影到通过Baher(1982)滤波器确定的特殊线性子空间上可以得到解。本文还介绍了延迟滤波器的概念,它是理想延迟的高阶近似,并建立了它们与Baher滤波器的等效性。这种联系给出了Baher滤波器及其特性的新颖的基本推导。本文末尾提供了Matlab程序,用于设计本文所述的滤波器。

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