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Optimal control of hepatitis b virus disease in a population with infected immigrants

机译:移民感染人群中乙肝病毒疾病的最佳控制

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This paper firstly presents a nonlinear extended deterministic model for assessing the impact of immigration on the spread of the Hepatitis B Virus (HBV) pandemic in a population with acute and chronic groups. This model studies the impact of optimal control on the treatment of immigrants and vaccination of HBV on the transmission dynamics of the disease in a homogeneous population with constant immigration. First, we derived the condition in which disease free equilibrium is locally and globally asymptotically stable. Second, we investigated by formulating the costs function problem as an optimal control problem, and we then use the Pontryagins Maximum Principle to solve the optimal control problems. The impact of each control mechanism individually and the combinations of these strategies in the control of HBV is also investigated. Numerical simulation of the model is implemented to investigate the sensitivity of certain key parameters on the treatment and vaccination of infected immigrants on the spread of the disease with acute and chronic group.
机译:本文首先提出了一种非线性扩展的确定性模型,用于评估移民对急性和慢性人群中乙型肝炎病毒(HBV)大流行传播的影响。该模型研究了最佳控制对移民的治疗和HBV疫苗接种对持续移民的同质人群疾病传播动力学的影响。首先,我们得出疾病无平衡在局部和全局渐近稳定的条件。其次,我们通过将成本函数问题表述为最优控制问题进行研究,然后使用庞特里亚金斯极大原理解决最优控制问题。还研究了每种控制机制的影响以及这些策略的组合在HBV控制中的作用。对该模型进行了数值模拟,以研究某些关键参数对受感染移民的治疗和疫苗接种在急性和慢性疾病传播中的敏感性。

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