Division of Mathematics, School of Advances Sciences, Vellore Institute of Technology, Chennai, Tamilnadu-600 127, India.
Department of Mathematical Sciences, College of Science, United Arab Emirats University, Al-Ain 15551, UAE.
Math Biosci Eng. 2022 Aug 4;19(11):11154-11171. doi: 10.3934/mbe.2022520.
Combining Sterile and Incompatible Insect techniques can significantly reduce mosquito populations and prevent the transmission of diseases between insects and humans. This paper describes impulsive differential equations for the control of a mosquito with Wolbachia. Several interesting conditions are created when sterile male mosquitoes are released impulsively, ensuring both open- and closed-loop control. To determine the wild mosquito population size in real-time, we propose an open-loop control system, which uses impulsive and constant releases of sterile male mosquitoes. A closed-loop control scheme is also being investigated, which specifies the release of sterile mosquitoes according to the size of the wild mosquito population. To eliminate or reduce a mosquito population below a certain threshold, the Sterile insect technique involves mass releases of sterile insects. Numerical simulations verify the theoretical results.
结合无菌和不相容昆虫技术可以显著降低蚊子数量,防止昆虫和人类之间的疾病传播。本文描述了带有沃尔巴克氏体的蚊子的脉冲微分方程控制。当无菌雄蚊被脉冲释放时,会产生几个有趣的条件,确保开环和闭环控制。为了实时确定野生蚊子种群的大小,我们提出了一个开环控制系统,该系统使用无菌雄蚊的脉冲和恒速释放。我们还研究了一种闭环控制方案,根据野生蚊子种群的大小来确定无菌蚊子的释放量。为了将蚊子种群消灭或减少到一定阈值以下,无菌昆虫技术涉及大量释放无菌昆虫。数值模拟验证了理论结果。