Federated Learning in the Detection of Fake News Using Deep Learning as a Basic Method.

Krist��na Machov��, Mari��n Mach, Viliam Balara
Author Information
  1. Krist��na Machov��: Department of Cybernetics and Artificial Intelligence, Faculty of Electrical Engineering and Informatics, Technical University of Ko��ice, Letn�� 9, 04200 Ko��ice, Slovakia. ORCID
  2. Mari��n Mach: Department of Cybernetics and Artificial Intelligence, Faculty of Electrical Engineering and Informatics, Technical University of Ko��ice, Letn�� 9, 04200 Ko��ice, Slovakia. ORCID
  3. Viliam Balara: Department of Cybernetics and Artificial Intelligence, Faculty of Electrical Engineering and Informatics, Technical University of Ko��ice, Letn�� 9, 04200 Ko��ice, Slovakia. ORCID

Abstract

This article explores the possibilities for federated learning with a deep learning method as a basic approach to train detection models for fake news recognition. Federated learning is the key issue in this research because this kind of learning makes machine learning more secure by training models on decentralized data at decentralized places, for example, at different IoT edges. The data are not transformed between decentralized places, which means that personally identifiable data are not shared. This could increase the security of data from sensors in intelligent houses and medical devices or data from various resources in online spaces. Each station edge could train a model separately on data obtained from its sensors and on data extracted from different sources. Consequently, the models trained on local data on local clients are aggregated at the central ending point. We have designed three different architectures for deep learning as a basis for use within federated learning. The detection models were based on embeddings, CNNs (convolutional neural networks), and LSTM (long short-term memory). The best results were achieved using more LSTM layers (F1 = 0.92). On the other hand, all three architectures achieved similar results. We also analyzed results obtained using federated learning and without it. As a result of the analysis, it was found that the use of federated learning, in which data were decomposed and divided into smaller local datasets, does not significantly reduce the accuracy of the models.

Keywords

References

  1. Sensors (Basel). 2021 Nov 15;21(22): [PMID: 34833656]
  2. Neural Comput. 1997 Nov 15;9(8):1735-80 [PMID: 9377276]
  3. Clin Infect Dis. 2022 Mar 23;74(6):1022-1029 [PMID: 34181716]
  4. Sensors (Basel). 2021 Dec 27;22(1): [PMID: 35009698]
  5. Sensors (Basel). 2022 Jul 04;22(13): [PMID: 35808537]
  6. Sensors (Basel). 2022 Jun 06;22(11): [PMID: 35684922]
  7. Trends Cogn Sci. 2021 May;25(5):388-402 [PMID: 33736957]

Grants

  1. APVV-22-0414/Slovak Research and Development Agency

Word Cloud

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