微驱动系统全局稳定的混合脉冲控制。

ISA transactions Pub Date : 2025-01-01 Epub Date: 2024-11-23 DOI:10.1016/j.isatra.2024.11.034
Qinbo Huang, Jitao Sun, Min Zhao
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引用次数: 0

摘要

本文首次采用混合脉冲控制方法研究了微驱动系统的全局镇定问题。由于子fas包含奇异集,采用传统的高阶完全驱动(HOFA)系统方法设计的控制器可能不适用于状态空间中的所有初始条件。不同于现有研究通过约束初始条件来实现亚镇定的方法,我们设计了一种基于HOFA系统方法和状态相关脉冲控制方法的混合控制器,解决了不受初始状态约束的全局镇定问题。通过混合控制器将子系统转化为混合系统,得到了子系统全局镇定的若干准则。注意到稳定脉冲和不稳定脉冲都被用来克服子fas中的奇异集。最后,有两个例子说明了所提出的方法。
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Hybrid impulsive control for global stabilization of subfully actuated systems.

This paper presents the first study of the global stabilization of subfully actuated systems (sub-FAS) by hybrid impulsive control method. Since sub-FAS contain singular sets, controllers designed by the conventional high-order fully actuated (HOFA) system approach may not be feasible for all initial conditions in the state space. Different from existing studies that constrain initial conditions to achieve substabilization, we devise a hybrid controller via the HOFA system approach and state-dependent impulsive control method, addressing the global stabilization problem without constraints on the initial states. By transforming sub-FAS into hybrid systems through the hybrid controller, we obtain some criteria for global stabilization of the sub-FAS. It is noted that both stabilizing and destabilizing impulses are used to overcome the singular sets in the sub-FAS. Finally, two examples illustrate the proposed approach.

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