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Improvement of an IIR asymmetric compensation gammachirp filter

机译:IIR非对称补偿gammachirp滤波器的改进

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References(5) Cited-By(2) An IIR implementation of the gammachirp filter has been proposed to simulate basilar membrane motion efficiently (Irino and Unoki, 1999). A reasonable filter response was provided by a combination of a gammatone filter and an IIR asymmetric compensation (AC) filter. It was noted, probably however, that the rms error was high when the absolute values of the parameters are large, because the coefficients of the IIR-AC filter were selected heuristically. In this report, we show that this is due to the sign inversion of the phase of poles and zeros in the conventional model. We propose a new definition of the IIR-AC filter and we describe a method of systematic determining the optimum coefficients and number of cascade for the second-order filter. This results in a reduction of the error to about 1/3 that produced by the conventional model.
机译:参考文献(5)Cited-By(2)有人提出将gammachirp滤波器的IIR实现有效地模拟基底膜运动(Irino和Unoki,1999)。 γ滤波器和IIR非对称补偿(AC)滤波器的组合提供了合理的滤波器响应。但是,可能注意到,当参数的绝对值较大时,均方根误差会很高,因为IIR-AC滤波器的系数是通过试探法选择的。在此报告中,我们表明这是由于常规模型中极点和零点的相位符号反转引起的。我们提出了IIR-AC滤波器的新定义,并描述了系统确定二阶滤波器的最佳系数和级联数的方法。这导致误差减小到传统模型产生的误差的约1/3。

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