Deep semantic learning for acoustic scene classification

被引:0
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作者
Yun-Fei Shao
Xin-Xin Ma
Yong Ma
Wei-Qiang Zhang
机构
[1] Tsinghua University,Department of Electronic Engineering
[2] Jiangsu Normal University,School of Linguistic Sciences and Arts
[3] Northeast Petroleum University,School of Mechanical Science and Engineering
[4] TAL Education,undefined
关键词
Acoustic scene classification; Audio semantic; Mini-SegNet; Mixup Normalization; DCASE 2020;
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摘要
Acoustic scene classification (ASC) is the process of identifying the acoustic environment or scene from which an audio signal is recorded. In this work, we propose an encoder-decoder-based approach to ASC, which is borrowed from the SegNet in image semantic segmentation tasks. We also propose a novel feature normalization method named Mixup Normalization, which combines channel-wise instance normalization and the Mixup method to learn useful information for scene and discard specific information related to different devices. In addition, we propose an event extraction block, which can extract the accurate semantic segmentation region from the segmentation network, to imitate the effect of image segmentation on audio features. With four data augmentation techniques, our best single system achieved an average accuracy of 71.26% on different devices in the Detection and Classification of Acoustic Scenes and Events (DCASE) 2020 ASC Task 1A dataset. The result indicates a minimum margin of 17% against the DCASE 2020 challenge Task 1A baseline system. It has lower complexity and higher performance compared with other state-of-the-art CNN models, without using any supplementary data other than the official challenge dataset.
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