Digital implementation of linear gammatone filters: Comparison of design methods

L. V. Immerseel, S. Peeters
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引用次数: 35

Abstract

Digital implementations of linear gammatone filters are regularly part of auditory models and can be used in the sound processing in cochlear implants. How close digital impulse, magnitude, and phase responses match the corresponding properties of the analog gammatone filter is evaluated for one, finite-impulse response filter design, and for five, infinite-impulse response filter designs: base-band impulse invariant transformation, impulse invariant transformation, matched z transformation, bilinear transformation, and mapping of differentials with backward differences. Filter properties and computational cost are compared as a function of the filter’s order and center frequency, and sampling frequency. Results show that filters designed with the base-band impulse invariant transformation give the best overall approximation of the analog properties with reasonable computational cost.
线性伽玛酮滤波器的数字化实现:设计方法的比较
线性伽玛酮滤波器的数字实现通常是听觉模型的一部分,可用于人工耳蜗的声音处理。评估了数字脉冲、幅度和相位响应与模拟伽马酮滤波器的相应属性的匹配程度,包括有限脉冲响应滤波器设计和无限脉冲响应滤波器设计:基带脉冲不变变换、脉冲不变变换、匹配z变换、双线性变换和差分与后向差分的映射。将滤波器的性能和计算成本作为滤波器阶数、中心频率和采样频率的函数进行了比较。结果表明,采用基带脉冲不变变换设计的滤波器在合理的计算成本下,能较好地全面逼近模拟特性。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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