论文标题

建模钢琴音调的感知响度:理论和应用

Modeling Perceptual Loudness of Piano Tone: Theory and Applications

论文作者

Qu, Yang, Qin, Yutian, Chao, Lecheng, Qian, Hangkai, Wang, Ziyu, Xia, Gus

论文摘要

在计算机音乐和心理声学中,知觉响度与身体属性之间的关系是一个重要的主题。对“相等大通轮廓”的早期研究可以追溯到1920年代,从那以后,对强度和频率的测量响度已被修改了很多次。但是,大多数研究仅关注综合声音,而对具有复杂音色的天然音调的诱导理论很少有理由是合理的。为此,我们通过建模钢琴音调研究了本文中天然音调知觉的理论和应用。该理论部分包含:1)对音高的钢琴相等大小轮廓进行准确的测量,以及2)一个机器学习模型,能够纯粹基于对人体主题测量的光谱特征来推断响度。至于应用程序,我们将理论应用于钢琴控制转移,其中我们调整了两个不同玩家钢琴(在不同的声学环境中)上的MIDI速度,以达到相同的感知效果。实验表明,我们的理论响度建模和相应的性能控制转移算法都显着优于其基准。

The relationship between perceptual loudness and physical attributes of sound is an important subject in both computer music and psychoacoustics. Early studies of "equal-loudness contour" can trace back to the 1920s and the measured loudness with respect to intensity and frequency has been revised many times since then. However, most studies merely focus on synthesized sound, and the induced theories on natural tones with complex timbre have rarely been justified. To this end, we investigate both theory and applications of natural-tone loudness perception in this paper via modeling piano tone. The theory part contains: 1) an accurate measurement of piano-tone equal-loudness contour of pitches, and 2) a machine-learning model capable of inferring loudness purely based on spectral features trained on human subject measurements. As for the application, we apply our theory to piano control transfer, in which we adjust the MIDI velocities on two different player pianos (in different acoustic environments) to achieve the same perceptual effect. Experiments show that both our theoretical loudness modeling and the corresponding performance control transfer algorithm significantly outperform their baselines.

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