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MusicNet: Compact Convolutional Neural Network for Real-time Background Music Detection (2110.04331v2)

Published 8 Oct 2021 in eess.AS and cs.SD

Abstract: With the recent growth of remote work, online meetings often encounter challenging audio contexts such as background noise, music, and echo. Accurate real-time detection of music events can help to improve the user experience. In this paper, we present MusicNet, a compact neural model for detecting background music in the real-time communications pipeline. In video meetings, music frequently co-occurs with speech and background noises, making the accurate classification quite challenging. We propose a compact convolutional neural network core preceded by an in-model featurization layer. MusicNet takes 9 seconds of raw audio as input and does not require any model-specific featurization in the product stack. We train our model on the balanced subset of the Audio Set~\cite{gemmeke2017audio} data and validate it on 1000 crowd-sourced real test clips. Finally, we compare MusicNet performance with 20 state-of-the-art models. MusicNet has a true positive rate (TPR) of 81.3% at a 0.1% false positive rate (FPR), which is significantly better than state-of-the-art models included in our study. MusicNet is also 10x smaller and has 4x faster inference than the best performing models we benchmarked.

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Authors (6)
  1. Chandan K. A. Reddy (19 papers)
  2. Vishak Gopa (1 paper)
  3. Harishchandra Dubey (37 papers)
  4. Sergiy Matusevych (9 papers)
  5. Ross Cutler (54 papers)
  6. Robert Aichner (14 papers)

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