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Estymacja tempa×Algorytm detekcji wysokości dźwięku×
DziedzinaWyszukiwanie informacji muzycznychWyszukiwanie informacji muzycznych
RodzinaMachine learningMachine learning
Rok powstania19982002
TwórcaEric D. ScheirerAlain de Cheveigné
TypAudio tempo analysisFundamental frequency estimation
Źródło pierwotneScheirer, E. D. (1998). Tempo and beat analysis of acoustic musical signals. The Journal of the Acoustical Society of America, 103(1), 588-601. DOI ↗de Cheveigné, A., & Kawahara, H. (2002). YIN, a fundamental frequency estimator for speech and music. The Journal of the Acoustical Society of America, 111(4), 1917-1930. DOI ↗
Inne nazwytempo detection, BPM estimation, pulse rate detectionf0 detection, fundamental frequency tracking, monophonic pitch extraction
Pokrewne55
PodsumowanieTempo estimation is the task of automatically determining the beats per minute (BPM) or tempo of a musical recording. Introduced by Scheirer (1998), it is fundamental to rhythm analysis, music classification, and synchronization applications. Tempo is one of the most perceptually salient features of music; accurate estimation enables music-aware systems and human-machine interaction. Unlike beat tracking, which produces discrete beat times, tempo estimation yields a single BPM value (or a distribution of likely tempi).Pitch detection (or fundamental frequency estimation) is the task of automatically determining the perceived pitch of a monophonic (single-source) audio signal at each moment in time. Formalized by de Cheveigné and Kawahara (2002) through the YIN algorithm, it is foundational to music and speech processing. Pitch detection enables vocal analysis, music transcription, instrument tuning, and speech analysis. Monophonic pitch is unambiguous; polyphonic pitch detection is fundamentally harder and a distinct problem.
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ScholarGatePorównaj metody: Tempo Estimation · Pitch Detection Algorithm. Pobrano 2026-06-17 z https://scholargate.app/pl/compare