Modeling and control for a descriptor epidemic system with nonlinear incidence rates

Chunling Chang, Yuanwei Jing, B. Zhu
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引用次数: 1

Abstract

This paper is concerned the bifurcation and chaos robust control of a descriptor epidemic system with nonlinear incidence rate based on T-S fuzzy model. To do this, the dynamic behavior of the epidemic system is analyzed by numerical simulation, the parameter variations leading to the bifurcation behavior and chaos of the epidemic system is verified by Lyapunov exponent. In order ameliorate the exiting results, a T-S fuzzy model is adopted to describe the infectious disease, under this way the solution to control problem of nonlinear system is changed into solution to the control problem of the linear system. Then a controller for this T-S fuzzy system is designed by using linear matrix inequalities (LMIs). The proposed controller approaches successfully eliminate the chaos appeared in the system. The effectiveness is verified by some numerical simulation results.
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具有非线性发病率的广义流行病系统的建模与控制
基于T-S模糊模型,研究一类具有非线性发病率的广义流行病系统的分岔和混沌鲁棒控制问题。为此,通过数值模拟分析了疫情系统的动力学行为,并利用Lyapunov指数验证了导致疫情系统分岔行为和混沌的参数变化。为了改进已有的结果,采用T-S模糊模型来描述传染病,从而将非线性系统的控制问题的解转化为线性系统的控制问题的解。然后利用线性矩阵不等式(lmi)设计了T-S模糊系统的控制器。所提出的控制方法成功地消除了系统中出现的混沌现象。数值仿真结果验证了该方法的有效性。
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