Dynamics and near-optimal control in a stochastic rumor propagation model incorporating media covera

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The appearance of rumors intensifies people\'s panic and affects social stability.How to control the spread of rumors has become an important issue which is worth studying.In order to more accurately reflect the actual situation in the real world,a stochastic model incorporating media coverage and Lévy noise is proposed to describe the dynamic process of rumor propagation.By introducing two control strategies of popular science education and media coverage in an emergency event,an near-optimal control problem that minimizes the influence and control cost of rumor propagation is proposed.Sufficient conditions for near-optimal control of the model are established by using a Hamiltonian function.Then the necessary conditions for near-optimal control are obtained by using the Pontryagin maximum principle.Finally,the effect of popular science education,media coverage and Lévy noise on rumor propagation process control is verified by numerical simulation.
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