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通过次谐波求和法测量音高。

Measurement of pitch by subharmonic summation.

作者信息

Hermes D J

机构信息

Institute for Perception Research/IPO, Eindhoven, The Netherlands.

出版信息

J Acoust Soc Am. 1988 Jan;83(1):257-64. doi: 10.1121/1.396427.

Abstract

In order to account for the phenomenon of virtual pitch, various theories assume implicitly or explicitly that each spectral component introduces a series of subharmonics. The spectral-compression method for pitch determination can be viewed as a direct implementation of this principle. The widespread application of this principle in pitch determination is, however, impeded by numerical problems with respect to accuracy and computational efficiency. A modified algorithm is described that solves these problems. Its performance is tested for normal speech and "telephone" speech, i.e., speech high-pass filtered at 300 Hz. The algorithm out-performs the harmonic-sieve method for pitch determination, while its computational requirements are about the same. The algorithm is described in terms of nonlinear system theory, i.c., subharmonic summation. It is argued that the favorable performance of the subharmonic-summation algorithm stems from its corresponding more closely with current pitch-perception theories than does the harmonic sieve.

摘要

为了解释虚拟音高现象,各种理论都隐含或明确地假设每个频谱成分都会引入一系列次谐波。用于音高确定的频谱压缩方法可以看作是这一原理的直接实现。然而,这一原理在音高确定中的广泛应用受到了准确性和计算效率方面数值问题的阻碍。描述了一种改进算法,该算法解决了这些问题。在正常语音和“电话”语音(即在300Hz进行高通滤波的语音)上测试了其性能。该算法在音高确定方面优于谐波筛选法,而其计算要求大致相同。该算法是根据非线性系统理论来描述的,即次谐波求和。有人认为,次谐波求和算法的良好性能源于它比谐波筛选法更符合当前的音高感知理论。

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