Low-Latency f0 Estimation for the Finger Plucked Electric Bass Guitar Using the Absolute Difference Function

C. Fonseca, T. Tavares
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引用次数: 1

Abstract

Audio-to-MIDI conversion can be used to allow digital musical control through an analog instrument. Audio-to-MIDI converters rely on fundamental frequency estimators that are usually restricted to a minimum delay of two fundamental periods. This delay is perceptible for the case of bass notes. In this dissertation, we propose a low-latency fundamental frequency estimation method that relies on specific characteristics of the electric bass guitar. By means of physical modeling and signal  acquisition, we show that the assumptions of this method are based on the generalization of all electric basses. We evaluated our method in a dataset with musical notes played by diverse bassists. Results show that our method outperforms the Yin method in low-latency settings, which indicates its suitability for low-latency audio-to-MIDI conversion of the electric bass sound.
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用绝对差函数估计指拨电低音吉他的低延迟f0
音频到midi转换可用于通过模拟仪器进行数字音乐控制。音频到midi转换器依赖于基频估计器,通常限制在两个基频周期的最小延迟。这种延迟对于低音音符来说是可以察觉的。在本文中,我们提出了一种低延迟的基频估计方法,该方法依赖于电吉他的特定特性。通过物理建模和信号采集,我们证明了该方法的假设是基于所有电基的泛化。我们在不同贝斯手演奏的音符数据集中评估了我们的方法。结果表明,该方法在低延迟设置下优于Yin方法,这表明该方法适用于低延迟电低音声音的音频到midi转换。
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