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      Dynamical Analysis and Optimal Control for a SEIR Model Based on Virus Mutation in WSNs

      , , , ,
      Mathematics
      MDPI AG

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          Abstract

          With the rapid development of science and technology, the application of wireless sensor networks (WSNs) is more and more widely. It has been widely concerned by scholars. Viruses are one of the main threats to WSNs. In this paper, based on the principle of epidemic dynamics, we build a SEIR propagation model with the mutated virus in WSNs, where E nodes are infectious and cannot be repaired to S nodes or R nodes. Subsequently, the basic reproduction number R0, the local stability and global stability of the system are analyzed. The cost function and Hamiltonian function are constructed by taking the repair ratio of infected nodes and the repair ratio of mutated infected nodes as optimization control variables. Based on the Pontryagin maximum principle, an optimal control strategy is designed to effectively control the spread of the virus and minimize the total cost. The simulation results show that the model has a guiding significance to curb the spread of mutated virus in WSNs.

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          Most cited references41

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          Wireless sensor networks: a survey

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            Spread of epidemic disease on networks

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              The general problem of the stability of motion

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                Author and article information

                Contributors
                Journal
                Mathematics
                Mathematics
                MDPI AG
                2227-7390
                May 2021
                April 22 2021
                : 9
                : 9
                : 929
                Article
                10.3390/math9090929
                9a23e4b4-092e-4cfe-add6-460994e74e09
                © 2021

                https://creativecommons.org/licenses/by/4.0/

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