输出/输入触发互联非线性系统的观测器分散自适应控制

IF 11.3 1区 计算机科学 Q1 AUTOMATION & CONTROL SYSTEMS IEEE Transactions on Cybernetics Pub Date : 2025-03-11 DOI:10.1109/TCYB.2025.3545279
Zhirong Zhang;Yongduan Song;Xiaoyuan Zheng;Long Chen;Petros Ioannou
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引用次数: 0

摘要

本文提出了一种双通道事件触发控制方法,用于非线性不确定互联系统,该方法采用回溯技术,在传感器和控制器两侧引入事件触发机制。在传感器侧使用事件触发机制对后退控制设计提出了挑战,因为控制器侧接收的不连续状态/输出信号导致虚拟控制信号不可微。在考虑更一般类型的事件触发机制时,这一挑战变得更加明显。与现有方法相比,本文提出了一种不同的思路,具有三个创新特点:1)所提出的事件触发机制不需要在传感器侧计算虚拟控制信号,然后再将其发送到控制器侧;2)直接考虑输出触发,不需要为无事件触发和有事件触发两种通信场景单独设计控制器,避免了因加工替换而产生误差的影响;3)只需要在线更新一个参数估计量,避免了过度参数化的问题。最后,我们通过一个数值案例验证了所提出的分散事件触发控制方法的有效性和优越性。
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Observer-Based Decentralized Adaptive Control of Interconnected Nonlinear Systems With Output/Input Triggering
In this article, a double-channel event-triggered control method is developed for nonlinear uncertain interconnected systems using backstepping techniques, which introduces event-triggering mechanisms at both the sensor and controller sides. Using event-triggering mechanism at the sensor side presents a challenge to the backstepping control design as the discontinuous state/output signals received at the controller side result in nondifferentiable virtual control signals. This challenge becomes more pronounced when considering more general types of event-triggering mechanisms. Compared with existing methods, this article proposes a different idea with three innovative features: 1) the proposed event-triggering mechanism does not require the calculation of virtual control signals at the sensor side before transmitting them to the controller side; 2) the output triggering is considered directly, and there is no need to design separate controllers for the two communication scenarios without and with event-triggering, thereby avoiding the effect of errors caused by processing substitutions; and 3) it necessitates the online update of only one parameter estimator, avoiding the issue of over-parameterization. Finally, we validate the effectiveness and advantages of the proposed decentralized event-triggered control approach through a numerical case study.
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来源期刊
IEEE Transactions on Cybernetics
IEEE Transactions on Cybernetics COMPUTER SCIENCE, ARTIFICIAL INTELLIGENCE-COMPUTER SCIENCE, CYBERNETICS
CiteScore
25.40
自引率
11.00%
发文量
1869
期刊介绍: The scope of the IEEE Transactions on Cybernetics includes computational approaches to the field of cybernetics. Specifically, the transactions welcomes papers on communication and control across machines or machine, human, and organizations. The scope includes such areas as computational intelligence, computer vision, neural networks, genetic algorithms, machine learning, fuzzy systems, cognitive systems, decision making, and robotics, to the extent that they contribute to the theme of cybernetics or demonstrate an application of cybernetics principles.
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