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An autocorrelation model with place dependence to account for the effect of harmonic number on fundamental frequency discrimination

机译:考虑位置的谐波次数对基频鉴别的影响的自相关模型

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摘要

Fundamental frequency (f0) difference limens (DLs) were measured as a function of f0 for sine-and random-phase harmonic complexes, bandpass filtered with 3-dB cutoff frequencies of 2.5 and 3.5 kHz (low region) or 5 and 7 kHz (high region), and presented at an average 15 dB sensation level (approximately 48 dB SPL) per component in a wideband background noise. Fundamental frequencies ranged from 50 to 300 Hz and 100 to 600 Hz in the low and high spectral regions, respectively. In each spectral region, f0 DLs improved dramatically with increasing f0 as approximately the tenth harmonic appeared in the passband. Generally, f0 DLs for complexes with similar harmonic numbers were similar in the two spectral regions. The dependence of f0 discrimination on harmonic number presents a significant challenge to autocorrelation (AC) models of pitch, in which predictions generally depend more on spectral region than harmonic number. A modification involving a “lag window” is proposed and tested, restricting the AC representation to a limited range of lags relative to each channel's characteristic frequency. This modified unitary pitch model was able to account for the dependence of f0 DLs on harmonic number, although this correct behavior was not based on peripheral harmonic resolvability.
机译:对于正弦和随机相位谐波配合物,以2.5和3.5 kHz(低频)的3dB截止频率或5和7 kHz(3 dB截止频率)进行带通滤波,测量了基本频率(f0)差异线性度(DLs)作为f0的函数。高频区域),并在宽带背景噪声中以每个分量平均15 dB的感知水平(大约48 dB SPL)呈现。在低和高频谱区域中,基本频率分别为50至300 Hz和100至600 Hz。在每个频谱区域中,f0 DL随着f0的增加而显着改善,因为通带中大约出现了第十次谐波。通常,在两个光谱区域中,具有相似谐波数的络合物的f0 DL相似。 f0辨别对谐波次数的依赖性对音调的自相关(AC)模型提出了重大挑战,在该模型中,预测通常比谐波次数更多地取决于频谱区域。提出并测试了涉及“滞后窗”的修改,将AC表示限制在相对于每个通道的特征频率的有限滞后范围内。尽管这种正确的行为不是基于外围谐波的可分辨性,但这种改进的单一基音模型能够解决f0 DLs对谐波数的依赖性。

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