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Isolation Strategy of a Two-Strain Avian Influenza Model using Optimal Control

机译:最优控制双应急禽流感模型的隔离策略

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Avian influenza has killed many victims of both birds and humans. Most cases of avian influenza infection in humans have resulted transmission from poultry to humans. To prevent or minimize the patients of avian influenza can be done by pharmaceutical and non-pharmaceutical measures such as the use of masks, isolation, etc. We will be analyzed two strains of avian influenza models that focus on treatment of symptoms with insulation, then investigate the stability of the equilibrium point by using Routh-Hurwitz criteria. We also used optimal control to reduce the number of humans infected by making the isolation level as the control then proceeds optimal control will be simulated. The completion of optimal control used in this study is the Pontryagin Minimum Principle and for simulation we are using Runge Kutta method. The results obtained showed that the application of two control is more optimal compared to apply one control only.
机译:禽流感杀害了许多鸟类和人类的受害者。大多数人类禽流感感染的病例导致从家禽传播到人类。为了防止或最小化禽流感患者可以通过药品和非药物措施(如使用面膜,隔离等)来完成我们将分析两个禽流感模型的两种菌株,这些模型专注于症状的症状,然后使用Routh-Hurwitz标准来研究均衡点的稳定性。我们还使用最佳控制来减少通过使隔离级别感染的人数作为控制,然后进行最佳控制。本研究中使用的最佳控制完成是Pontryagin最低原理和模拟我们正在使用Runge Kutta方法。得到的结果表明,与仅应用一个控制相比,两个控制的应用更为最优。

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