首页> 外文期刊>International Journal of Modern Physics, C. Physics and Computers >Optimal control, signal flow graph, and system electronic circuit realization for nonlinear Anopheles mosquito model
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Optimal control, signal flow graph, and system electronic circuit realization for nonlinear Anopheles mosquito model

机译:非线性肌肉蚊香模型的最优控制,信号流程图和系统电子电路实现

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摘要

We study the estimated investigative answers for one of the popular models in biomathematics, in particular, the nonlinear Anopheles mosquito model numerically. The optimal control (OC) for nonlinear Anopheles mosquito model is examined. Important and adequate conditions to ensure the presence and singularity of the arrangements of the control issue are assumed. Two control factors are suggested to limit the normal measure of eggs laid per treated female every day. The signal stream chart and SimulinkMatlab of this model are constructed. The framework is designed utilizing the MULTISIM simulation program. We utilize the homotopy disruption strategy (HPM) to examine the logical surmised answer for the nonlinear control issue. We utilize the mathematical programming bundles, for example, Maple, to emphasize while ascertaining the rough arrangement. Results are displayed graphically and introduced to delineate the conduct of obtained inexact arrangements.
机译:我们研究了生物疗法学中的一个流行模型之一的估计的调查答案,特别是非线性anopheles蚊子模型。 检查了非线性anopheles蚊模模型的最佳控制(OC)。 确保控制问题安排的存在和奇点的重要和充分条件。 建议两个控制因素限制每天均为女性的鸡蛋的正常措施。 构建该模型的信号流图和Simulink Matlab。 该框架是利用Multisim仿真程序设计的。 我们利用同型中断策略(HPM)来检查非线性控制问题的逻辑误解答案。 我们利用数学编程束,例如枫木,在确定粗略布置时强调。 结果以图形方式显示并介绍以描绘获得的不精确布置的行为。

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