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Nonlinear switching control for suppressing the spread of avian influenza

机译:抑制禽流感传播的非线性切换控制

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This paper proposes a novel method of killing birds and applying vaccines for suppressing the spread of avian influenza via a nonlinear switching control approach. The switching strategy is based on the population of the susceptible birds and the population of the susceptible humans. There are four switching cases. For the first three switching cases, the elimination control force and the quarantine control force are equal to either zero or one. For the last switching case, they are equal to one minus a scalar divided by the population of the susceptible birds and one minus another scalar divided by the population of the susceptible humans, respectively. The system state vectors of the avian influenza model are guaranteed to reach the desirable equilibrium point. Also, the positivity requirements on the system states as well as the constraints on both the lower bounds and the upper bounds of both the elimination control force and the quarantine control force are guaranteed to be satisfied. Computer numerical simulation results show that the proposed control strategy is very effective and efficient.
机译:本文提出了一种通过非线性切换控制方法杀死鸟类并应用疫苗抑制禽流感传播的新方法。转换策略基于易感鸟类的数量和易感人类的数量。有四种切换情况。对于前三个切换情况,消除控制力和隔离控制力等于零或一。对于最后一个切换情况,它们分别等于一个减去标量除以易感鸟的数量,再减去一个标量除以易感鸟的数量。保证禽流感模型的系统状态向量达到理想的平衡点。而且,保证了对系统状态的正性要求以及对消除控制力和隔离控制力的下限和上限的约束。计算机数值仿真结果表明,所提出的控制策略是非常有效的。

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