Output-feedback stabilization of probabilistic Boolean control networks

IF 3.7 2区 计算机科学 Q2 AUTOMATION & CONTROL SYSTEMS
Shuting Zhang , Xueying Ding , Jianquan Lu , Jungang Lou , Yang Liu
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引用次数: 0

Abstract

To simulate a more realistic and uncertain system model, this paper innovatively studies the output feedback control strategy to stabilize probabilistic Boolean control networks (PBCNs). This is the first time that output feedback method is used to solve stability problems in PBCNs. Compared with the traditional state feedback, observing output states is more direct and efficient. Firstly, a condition for the output-feedback stabilization in the sense of minimum time is explored. A sufficient and necessary condition is then provided to determine time-invariant output-feedback stabilizers. Afterwards, two constructive algorithms for design time-invariant output-feedback controllers are proposed. To comprehensively solve the output feedback stabilization problems, this paper explores two sufficient conditions for obtaining stabilizers under time-varying feedback control inputs, which provides more feasibility and significance for solving biomedical problems.

概率布尔控制网络的输出反馈稳定化
为了模拟更真实、更不确定的系统模型,本文创新性地研究了输出反馈控制策略,以稳定概率布尔控制网络(PBCN)。这是首次使用输出反馈方法来解决 PBCN 的稳定性问题。与传统的状态反馈相比,观察输出状态更直接、更有效。首先,探讨了最小时间意义上的输出反馈稳定条件。然后,提供了确定时不变输出反馈稳定器的充分必要条件。随后,提出了两种设计时变输出反馈控制器的构造性算法。为了全面解决输出反馈稳定问题,本文探讨了在时变反馈控制输入下获得稳定器的两个充分条件,这为解决生物医学问题提供了更多的可行性和意义。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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来源期刊
Nonlinear Analysis-Hybrid Systems
Nonlinear Analysis-Hybrid Systems AUTOMATION & CONTROL SYSTEMS-MATHEMATICS, APPLIED
CiteScore
8.30
自引率
9.50%
发文量
65
审稿时长
>12 weeks
期刊介绍: Nonlinear Analysis: Hybrid Systems welcomes all important research and expository papers in any discipline. Papers that are principally concerned with the theory of hybrid systems should contain significant results indicating relevant applications. Papers that emphasize applications should consist of important real world models and illuminating techniques. Papers that interrelate various aspects of hybrid systems will be most welcome.
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