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Nonlinear state-dependent feedback control strategy in the SIR epidemic model with resource limitation

机译:具有资源限制的SIR流行病模型中的非线性状态依赖反馈控制策略

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In present work, in order to avoid the spread of disease, the impulse control strategy is implemented to keep the density of infections at a low level. The SIR epidemic model with resource limitation including a nonlinear impulsive function and a state-dependent feedback control scheme is proposed and analyzed. Based on the qualitative properties of the corresponding continuous system, the existence and stability of positive order-k ( k ∈ Z + $kinmathbf{Z}^{+}$ ) periodic solution are investigated. By using the Poincaré map and the geometric method, some sufficient conditions for the existence and stability of positive order-1 or order-2 periodic solution are obtained. Moreover, the sufficient conditions which guarantee the nonexistence of order-k ( k ≥ 3 $kgeq3$ ) periodic solution are given. Some numerical simulations are carried out to illustrate the feasibility of our main results.
机译:在目前的工作中,为了避免疾病的传播,实施了冲动控制策略以将感染的密度保持在较低水平。提出并分析了资源受限的SIR流行病模型,包括非线性脉冲函数和状态相关的反馈控制方案。基于相应连续系统的定性性质,研究了正阶k(k∈Z + $ k in mathbf {Z} ^ {+} $)周期解的存在性和稳定性。通过使用庞加莱图和几何方法,获得了存在于1阶或2阶正周期解的稳定性的充分条件。此外,给出了保证不存在k阶(k≥3$ k geq3 $)周期解的充分条件。进行了一些数值模拟,以说明我们的主要结果的可行性。

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