多未知控制方向下非线性系统的渐近事件触发跟踪设计

Asymptotic Event-Based Tracking Design for Nonlinear Systems Under Multiple Unknown Control Directions

IEEE Transactions on Systems, Man, and Cybernetics: Systems · 2025
被引 2
ABS 3

中文导读

针对具有多个未知控制方向的非线性严格反馈系统,提出一种基于新型Nussbaum型函数的事件触发渐近跟踪控制方法,并设计了两种避免Zeno现象的事件触发机制。

Abstract

This article proposes an event-based asymptotic tracking control method for nonlinear strict-feedback systems with multiple unknown control directions. The system is characterized by multiple unknown control directions, which pose challenges to its performance. In contrast to traditional Nussbaum-type methods, we propose a novel Nussbaum-type function to handle multiple Nussbaum-type gains, ensuring robust asymptotic tracking. Additionally, two event-triggered mechanisms are developed to alleviate the computational complexity of adaptive Nussbaum design. The static event-triggered mechanism significantly improves the system’s responsiveness to dynamic changes by employing dynamically decreasing thresholds. Building on this, a dynamic event-triggered mechanism is introduced, incorporating an internal variable that continuously adjusts the triggering conditions over time. Furthermore, the proposed design not only achieves asymptotic tracking control but also ensures that both event-triggered mechanisms avoid the Zeno phenomenon. To validate the proposed design schemes, a simulation example of a marine surface vehicle is presented.

非线性系统事件触发控制自适应控制跟踪控制