数字音频合成中可听混叠失真的客观评价

J. Schimmel
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引用次数: 1

摘要

研究了具有无穷傅里叶级数的基本周期波形在数字音频信号合成中的混叠失真问题。由于数字域的带宽不受限制,在数字域产生信号时存在混叠现象。为了避免或减少混叠失真,有几种信号合成技术,但它们的计算量很高。因此,当使用过采样时,基本周期波形的简单生成仍然有效。混叠失真总是存在的,但混叠产生的一些频谱分量会被谐波分量掩盖,从而听不见。本文利用同时掩蔽的心理声学模型对可听混叠失真进行了客观评价,并与其他方法的计算需求进行了比较。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Objective evaluation of audible aliasing distortion in digital audio synthesis
This paper deals with aliasing distortion in digital audio signal synthesis of basic periodic waveforms with infinite Fourier series. There is aliasing when these signals are generated in digital domain because of its unlimited bandwidth. There are several synthesis techniques of these signals designed to avoid or reduce the aliasing distortion but they have high computing demands. Trivial generation of basic periodic waveforms is therefore still effective for sound synthesis when oversampling is used. There will always be the aliasing distortion but some spectral components produced by the aliasing will be masked with harmonic components and thus inaudible. This paper deals with objective evaluation of audible aliasing distortion with the help of a psychoacoustic model of simultaneous masking and compares the computing demands with other methods.
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