Original scientific paper
https://doi.org/18048/2020.59.08.
Use of Convolutional Neural Network for Fish Species Classification
Daniel Štifanić
orcid.org/0000-0001-9396-2441
; University of Rijeka, Faculty of Engineering
Jelena Musulin
orcid.org/0000-0002-5213-1550
; University of Rijeka, Faculty of Engineering
Zlatan Car
orcid.org/0000-0003-2817-9252
; University of Rijeka, Faculty of Engineering
Robert Čep
orcid.org/0000-0001-9610-4215
Abstract
Fish population monitoring systems based on underwater video recording are becoming more popular nowadays, however, manual processing and analysis of such data can be time-consuming. Therefore, by utilizing machine learning algorithms, the data can be processed more efficiently. In this research, authors investigate the possibility of convolutional neural network (CNN) implementation for fish species classification. The dataset used in this research consists of four fish species (Plectroglyphidodon dickii, Chromis chrysura, Amphiprion clarkii, and Chaetodon lunulatus), which gives a total of 12859 fish images. For the aforementioned classification algorithm, different combinations of hyperparameters were examined as well as the impact of different activation functions on the classification performance. As a result, the best CNN classification performance was achieved when Identity activation function is applied to hidden layers, RMSprop is used as a solver with a learning rate of 0.001, and a learning rate decay of 1e-5. Accordingly, the proposed CNN model is capable of performing high-quality fish species classifications.
Keywords
Machine learning; convolutional neural network; fish species classification; underwater video
Hrčak ID:
249270
URI
Publication date:
30.12.2020.
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