控制理论(社会学)
终端滑动模式
稳健性(进化)
计算机科学
执行机构
非周期图
航天器
Lyapunov稳定性
同步(交流)
控制器(灌溉)
李雅普诺夫函数
跟踪误差
滑模控制
工程类
控制(管理)
数学
非线性系统
农学
量子力学
计算机网络
化学
人工智能
航空航天工程
频道(广播)
物理
组合数学
基因
生物化学
生物
标识
DOI:10.1177/10775463251352284
摘要
This paper presents a robust control strategy for achieving synchronized and accurate attitude tracking of multiple spacecraft in the presence of uncertainties, communication constraints, and input saturation. A new controller is proposed that combines a nonsingular fast terminal sliding mode control (NSFTSMC) with a dynamic event-triggered (ET) mechanism. The NSFTSMC ensures robustness against exogenous disturbances, while the ET strategy mitigates the effects of limited communication bandwidth by reducing the control update frequency. The ET method implements an aperiodic control update approach, that is, the actuator output gets updated only when a predefined triggering condition is satisfied. Until then, the actuator output maintains its previous output. Lyapunov stability analysis confirms that the proposed composite controller guarantees practical finite-time convergence of all error states to a small neighborhood around the origin. Moreover, the non-existence of Zeno behavior under the proposed ET scheme is also demonstrated theoretically. Finally, the effectiveness of the proposed control method is demonstrated through comparative simulations with recent ET-based schemes. Simulation results across various performance metrics highlight the superiority of the proposed approach.
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