Continuing Education Center, Mustansiriyah University, Baghdad 14022, Iraq.
Information Technology Unit, Hilla University College, Babylon 51001, Iraq.
Comput Intell Neurosci. 2022 Jun 30;2022:8539278. doi: 10.1155/2022/8539278. eCollection 2022.
Since the outbreak of the COVID-19 epidemic, several control strategies have been proposed. The rapid spread of COVID-19 globally, allied with the fact that COVID-19 is a serious threat to people's health and life, motivated many researchers around the world to investigate new methods and techniques to control its spread and offer treatment. Currently, the most effective approach to containing SARS-CoV-2 (COVID-19) and minimizing its impact on education and the economy remains a vaccination control strategy, however. In this paper, a modified version of the susceptible, exposed, infectious, and recovered (SEIR) model using vaccination control with a novel construct of active disturbance rejection control (ADRC) is thus used to generate a proper vaccination control scheme by rejecting those disturbances that might possibly affect the system. For the COVID-19 system, which has a unit relative degree, a new structure for the ADRC has been introduced by embedding the tracking differentiator (TD) in the control unit to obtain an error signal and its derivative. Two further novel nonlinear controllers, the nonlinear PID and a super twisting sliding mode (STC-SM) were also used with the TD to develop a new version of the nonlinear state error feedback (NLSEF), while a new nonlinear extended state observer (NLESO) was introduced to estimate the system state and total disturbance. The final simulation results show that the proposed methods achieve excellent performance compared to conventional active disturbance rejection controls.
自 COVID-19 疫情爆发以来,已经提出了几种控制策略。COVID-19 在全球范围内的迅速传播,以及 COVID-19 对人们的健康和生命构成严重威胁的事实,促使世界各地的许多研究人员研究新的方法和技术来控制其传播并提供治疗方法。目前,控制 SARS-CoV-2(COVID-19)并最大程度地减少其对教育和经济的影响的最有效方法仍然是接种疫苗控制策略。在本文中,使用了一种带有新颖主动干扰抑制控制(ADRC)结构的改进的易感染、暴露、感染和恢复(SEIR)疫苗接种控制模型,通过拒绝可能影响系统的干扰来生成适当的疫苗接种控制方案。对于具有单位相对度的 COVID-19 系统,通过在控制单元中嵌入跟踪微分器(TD),引入了 ADRC 的新结构,以获得误差信号及其导数。还使用了另外两个新颖的非线性控制器,非线性 PID 和超扭曲滑模(STC-SM),与 TD 一起开发了一个新版本的非线性状态误差反馈(NLSEF),同时引入了一个新的非线性扩展状态观测器(NLESO)来估计系统状态和总干扰。最终的仿真结果表明,与传统的主动干扰抑制控制相比,所提出的方法具有出色的性能。