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Efficient pitch detection algorithms for pitched musical instrument sounds: A comparative performance evaluation

机译:音高乐器声音的有效音高检测算法:比较性能评估

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Pitch detection of an audio signal is an interesting research topic in the field of speech signal processing. Pitch is one of the most important perceptual features, as it conveys much information about the audio signal. It is closely related to the physical feature of fundamental frequency f. For musical instrument sounds, the f and the measured pitch can be considered equivalent. In this paper four pitch detection algorithms have been proposed for pitched musical instrument sounds. The goal of this paper is to investigate how these algorithms should be adapted to pitched musical instrument sounds analysis and to provide a comparative performance evaluation of the most representative state-of-the-art approaches. This study is carried out on a large database of pitched musical instrument sounds, comprising four types of pitched musical instruments violin, trumpet, guitar and flute. The algorithmic performance is assessed according to the ability to estimate pitch contour accurately.
机译:音频信号的音高检测是语音信号处理领域中一个有趣的研究主题。音调是最重要的感知功能之一,因为它传达了有关音频信号的许多信息。它与基频f的物理特征密切相关。对于乐器声音,f和测得的音高可以认为是等效的。在本文中,针对音高乐器的声音提出了四种音高检测算法。本文的目的是研究如何将这些算法应用于音高乐器的声音分析,并提供最具代表性的最新方法的比较性能评估。这项研究是在音高乐器声音的大型数据库上进行的,该数据库包括四种类型的音高乐器小提琴,小号,吉他和长笛。根据准确估计音高轮廓的能力来评估算法性能。

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