数学
指数稳定性
脉冲控制
脉冲(物理)
控制理论(社会学)
理论(学习稳定性)
应用数学
消光(光学矿物学)
噪音(视频)
流行病模型
指数函数
均方
指数增长
稳定性理论
控制(管理)
随机过程
疾病
数学优化
随机建模
脉冲噪声
最优控制
指数衰减
数值稳定性
脉冲响应
计算机模拟
摘要
ABSTRACT Stochastic environment and time delay have significant effects on the stability of anthrax. This study develops a time‐delayed stochastic anthrax model and explores sufficient conditions for the disease extinction. To effectively cope with disease outbreaks, we incorporate impulsive control strategies into the model and establish sufficient conditions for the system to attain mean square practical exponential stability. Through numerical simulations, it was observed that heightened noise and impulse intensity levels contribute to the disease's expedited extinction.
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