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Generalized digital Butterworth filter design

机译:广义数字巴特沃斯滤波器设计

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摘要

This correspondence introduces a new class of infinite impulse response (IIR) digital filters that unifies the classical digital Butterworth filter and the well-known maximally flat FIR filter. New closed-form expressions are provided, and a straightforward design technique is described. The new IIR digital filters have more zeros than poles (away from the origin), and their (monotonic) square magnitude frequency responses are maximally flat at /spl omega/=0 and at /spl omega/=/spl pi/. Another result of the correspondence is that for a specified cutoff frequency and a specified number of zeros, there is only one valid way in which to split the zeros between z=-1 and the passband. This technique also permits continuous variation of the cutoff frequency. IIR filters having more zeros than poles are of interest because often, to obtain a good tradeoff between performance and implementation complexity, just a few poles are best.
机译:这种对应关系引入了一类新的无限脉冲响应(IIR)数字滤波器,该滤波器将经典的数字Butterworth滤波器和著名的最大平坦FIR滤波器结合在一起。提供了新的封闭形式的表达式,并描述了一种简单的设计技术。新的IIR数字滤波器的零点多于极点(远离原点),并且它们的(单调)平方幅度频率响应在/ spl omega / = 0和/ spl omega / = / spl pi /时最大平坦。对应关系的另一个结果是,对于指定的截止频率和指定的零个数,只有一种有效的方法可以在z = -1和通带之间分割零。该技术还允许截止频率的连续变化。 IIR滤波器具有比极点更多的零点,这是令人感兴趣的,因为通常为了获得性能和实现复杂性之间的良好折衷,最好只有几个极点。

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