Non-negative Matrix Factorisation (NMF) is a commonly used tool in many musical signal processing tasks, including Automatic Music Transcription (AMT). However unsupervised NMF is seen to be problematic in this context, and harmonically constrained variants of NMF have been proposed. While useful, the harmonic constraints may be constrictive in mixed signals. We have previously observed that recovery of overlapping signal elements using NMF is improved through introduction of a sparse coding step, and propose here the incorporation of a sparse coding step using the Hellinger distance into a NMF algorithm. Improved AMT results for unsupervised NMF are reported
On étudie l’application des algorithmes de décomposition matricielles tel que la Factorisation Matri...
Techniques based on non-negative matrix factorization (NMF) have been successfully used to decompose...
Techniques based on non-negative matrix factorization (NMF) have been successfully used to decompose...
Non-negative Matrix Factorisation (NMF) is a commonly used tool in many musical signal processing ta...
Non-negative Matrix Factorisation (NMF) is a popular tool in musical signal processing. However, pro...
Non-negative Matrix Factorisation (NMF) is a popular tool in musical signal processing. However, pro...
(c)2014 IEEE. Personal use of this material is permitted. Permission from IEEE must be obtained for ...
This article presents theoretical and experimental results about constrained non-negative matrix fac...
International audiencePolyphonic pitch transcription consists of estimating the onset time, duration...
Discovering a parsimonious representation that reflects the structure of audio is a requirement of m...
Automatic Music Transcription (AMT) is concerned with the problem of producing the pitch content of ...
Conselho Nacional de Desenvolvimento Científico e Tecnológico (CNPq)Non-negative matrix factorizatio...
Automatic music transcription (AMT) can be performed by deriving a pitch-time representation through...
Automatic transcription of music consists in producing a symbolic representation of a piece of music...
In this paper, an Automatic Music Transcription (AMT) algorithm based on a supervised Non-negatve Ma...
On étudie l’application des algorithmes de décomposition matricielles tel que la Factorisation Matri...
Techniques based on non-negative matrix factorization (NMF) have been successfully used to decompose...
Techniques based on non-negative matrix factorization (NMF) have been successfully used to decompose...
Non-negative Matrix Factorisation (NMF) is a commonly used tool in many musical signal processing ta...
Non-negative Matrix Factorisation (NMF) is a popular tool in musical signal processing. However, pro...
Non-negative Matrix Factorisation (NMF) is a popular tool in musical signal processing. However, pro...
(c)2014 IEEE. Personal use of this material is permitted. Permission from IEEE must be obtained for ...
This article presents theoretical and experimental results about constrained non-negative matrix fac...
International audiencePolyphonic pitch transcription consists of estimating the onset time, duration...
Discovering a parsimonious representation that reflects the structure of audio is a requirement of m...
Automatic Music Transcription (AMT) is concerned with the problem of producing the pitch content of ...
Conselho Nacional de Desenvolvimento Científico e Tecnológico (CNPq)Non-negative matrix factorizatio...
Automatic music transcription (AMT) can be performed by deriving a pitch-time representation through...
Automatic transcription of music consists in producing a symbolic representation of a piece of music...
In this paper, an Automatic Music Transcription (AMT) algorithm based on a supervised Non-negatve Ma...
On étudie l’application des algorithmes de décomposition matricielles tel que la Factorisation Matri...
Techniques based on non-negative matrix factorization (NMF) have been successfully used to decompose...
Techniques based on non-negative matrix factorization (NMF) have been successfully used to decompose...