Security design and application of Internet of things based on asymmetric encryption algorithm and neural network for COVID-19

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Abstract

During the period of COVID-19 protection, Internet of Things (IoT) has been widely used to fight the outbreak of pandemic. However, the security is a major issue of IoT. In this research, a new algorithm knn-bp is proposed by combining BP neural network and KNN. Knn-bp algorithm first predicts the collected sensor data. After the forecast is completed, the results are filtered. Compared with the data screened by traditional BP neural network, k-nearest-neighbor algorithm has good data stability in adjusting and supplementing outliers, and improves the accuracy of prediction model. This method has the advantages of high efficiency and small mean square error. The application of this method has certain reference value. Knn-bp algorithm greatly improves the accuracy and efficiency of the Internet of things. Internet of things network security is guaranteed. It plays an indelible role in the protection of COVID-19.

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APA

Tang, Y. (2020). Security design and application of Internet of things based on asymmetric encryption algorithm and neural network for COVID-19. Journal of Intelligent and Fuzzy Systems, 39(6), 8703–8711. https://doi.org/10.3233/JIFS-189266

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