扭曲过滤器和他们的音频应用

M. Karjalainen, A. Harma, U. Laine, J. Huopaniemi
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引用次数: 36

摘要

许多DSP算法的一个固有特性是,它们倾向于表现出从零到奈奎斯特频率的均匀频率分辨率。这是使用单位延迟作为构建模块的直接结果;频率无关的延迟意味着均匀的频率分辨率。然而,在音频应用中,这通常是一个不希望出现的特性,因为响应属性通常是按照人类听觉系统的行为以对数尺度指定和测量的。我们介绍了扭曲滤波器和DSP技术的概述,可以设计成更好地匹配音频和听觉标准。音频应用,包括听觉和音乐现象的建模,均衡技术,听觉化,和音频编码,提出。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Warped filters and their audio applications
An inherent property of many DSP algorithms is that they tend to exhibit uniform frequency resolution from zero to the Nyquist frequency. This is a direct consequence of using unit delays as building blocks; a frequency independent delay implies uniform frequency resolution. In audio applications, however, this is often an undesirable feature since the response properties are typically specified and measured on a logarithmic scale, following the behavior of the human auditory system. We present an overview of warped filters and DSP techniques which can be designed to better match the audio and auditory criteria. Audio applications, including modeling of auditory and musical phenomena, equalization techniques, auralization, and audio coding, are presented.
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