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一种基于无源性的Lipschitz非线性系统新型设计及其在乙型肝炎疾病中的应用。

A novel passivity-based design for Lipschitz nonlinear systems with application to hepatitis B disease.

作者信息

Gorji Shaghayegh, Fakharian Ahmad, Abbasi Rezvan

机构信息

Department of Electrical Engineering, Qa.C., Islamic Azad University, Qazvin, Iran.

出版信息

Theory Biosci. 2025 Sep 16. doi: 10.1007/s12064-025-00445-8.

Abstract

In this paper, an innovative passive formulation has been developed for a wide range of nonlinear systems. During this formulation, a stable and passive state-observer is provided which leads to have a passive closed-loop system. Some remarkable definitions and charts are presented for time-invariant and time-varying Lipschitz systems in four different control scenarios. From a different perspective, a novel interconnection has been established which links the passivity of subsystems with passivity/stability of the closed-loop system. All definitions have been arranged according to the systematic approach named "virtually Euler-Lagrange" form of passivation. Since some design conditions will be released due to using the mentioned method and definitions, the process of analysis and design will be simplified. The proposed passivity-based controller has been applied to treat hepatitis B virus infection disease in several scenarios. All the proposed definitions have been validated by the simulation results.

摘要

在本文中,针对广泛的非线性系统开发了一种创新的无源公式。在这个公式中,提供了一个稳定的无源状态观测器,从而得到一个无源闭环系统。针对四种不同控制场景下的时不变和时变李普希茨系统,给出了一些显著的定义和图表。从不同的角度,建立了一种新颖的互联关系,将子系统的无源性与闭环系统的无源性/稳定性联系起来。所有定义都是按照名为“虚拟欧拉 - 拉格朗日”形式的无源系统化方法排列的。由于使用上述方法和定义会放宽一些设计条件,分析和设计过程将得到简化。所提出的基于无源性的控制器已应用于多种场景下治疗乙型肝炎病毒感染疾病。所有提出的定义均通过仿真结果得到验证。

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