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Optimal control of an SIVRS epidemic spreading model with virus variation based on complex networks

机译:基于复杂网络的带有病毒变异的SIVRS流行病传播模型的最优控制

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A novel SIVRS mathematical model for infectious diseases spreading is proposed and investigated in this paper. In this model virus variation factors are considered in the process of epidemic spreading based on complex networks, which can describe different contact status for different agents including the susceptible, the infectious, the variant and the recovered in a network. An optimal control problem is formulated to maximize the recovered agents with the limited resource allocation and optimal control strategies over the susceptible, the infected and the variant are investigated. Then the existence of a solution to the optimal control problem is given based on Pontryagin's Minimum Principle and modified forward backward sweep technique. Numerical simulations are provided to illustrate obtained theoretical results.
机译:提出并研究了一种新的传染病传播的SIVRS数学模型。在此模型中,在基于复杂网络的流行病传播过程中考虑了病毒变异因素,这些变异因素可以描述网络中易感性,传染性,变异和恢复的不同媒介的不同接触状态。制定了一个最佳控制问题,以有限的资源分配来最大化回收的病原体,并研究了对易感者,感染者和变种的最佳控制策略。然后基于庞特里亚金的最小原理和改进的前向后掠技术给出了最优控制问题的解决方案。提供数值模拟以说明获得的理论结果。

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