Rethinking environmental sound classification using convolutional neural networks: optimized parameter tuning of single feature extraction
Author:
Funder
international islamic university malaysia
Publisher
Springer Science and Business Media LLC
Subject
Artificial Intelligence,Software
Link
https://link.springer.com/content/pdf/10.1007/s00521-021-06091-7.pdf
Reference32 articles.
1. Ali H, Tran SN, Benetos E, Garcez ASDA (2018) Speaker recognition with hybrid features from a deep belief network. Neural Comput Appl 29(6):13–19
2. Ghosal, D, Kolekar MH (2018) Music genre recognition using deep neural networks and transfer learning. In: Interspeech, pp 2087–2091
3. Chachada S, Kuo CCJ (2014) Environmental sound recognition: a survey. APSIPA Trans Signal Inf Process 3
4. Zhang Z, Xu S, Cao S, Zhang S (2018) Deep convolutional neural network with mixup for environmental sound classification. In: Chinese conference on pattern recognition and computer vision (prcv), Springer, Cham, pp 356–367
5. Shkurti F, Chang WD et al (2017) Underwater multi-robot convoying using visual tracking by detection. In: 2017 IEEE/RSJ international conference on intelligent robots and systems (IROS), pp 4189–4196. IEEE
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