Effective Fixed-Time Control for Constrained Nonlinear System

Fuente: arXiv
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Main Authors: Gong, Chenglin, Wang, Ziming, Jiang, Guanxuan, Wang, Xin, Ji, Yiding
Format: Preprint
Published: 2025
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author Gong, Chenglin
Wang, Ziming
Jiang, Guanxuan
Wang, Xin
Ji, Yiding
author_facet Gong, Chenglin
Wang, Ziming
Jiang, Guanxuan
Wang, Xin
Ji, Yiding
contents In this paper, we tackle the state transformation problem in non-strict full state-constrained systems by introducing an adaptive fixed-time control method, utilizing a one-to-one asymmetric nonlinear mapping auxiliary system. Additionally, we develop a class of multi-threshold event-triggered control strategies that facilitate autonomous controller updates, substantially reducing communication resource consumption. Notably, the self-triggered strategy distinguishes itself from other strategies by obviating the need for continuous real-time monitoring of the controller's state variables. By accurately forecasting the subsequent activation instance, this strategy significantly optimizes the efficiency of the control system. Moreover, our theoretical analysis demonstrates that the semi-global practical fixed-time stability (SPFTS) criterion guarantees both tracking accuracy and closed-loop stability under state constraints, with convergence time independent of initial conditions. Finally, simulation results reveal that the proposed method significantly decreases the frequency of control command updates while maintaining tracking accuracy.
format Preprint
id arxiv_https___arxiv_org_abs_2505_20870
institution arXiv
publishDate 2025
record_format arxiv
spellingShingle Effective Fixed-Time Control for Constrained Nonlinear System
Gong, Chenglin
Wang, Ziming
Jiang, Guanxuan
Wang, Xin
Ji, Yiding
Systems and Control
In this paper, we tackle the state transformation problem in non-strict full state-constrained systems by introducing an adaptive fixed-time control method, utilizing a one-to-one asymmetric nonlinear mapping auxiliary system. Additionally, we develop a class of multi-threshold event-triggered control strategies that facilitate autonomous controller updates, substantially reducing communication resource consumption. Notably, the self-triggered strategy distinguishes itself from other strategies by obviating the need for continuous real-time monitoring of the controller's state variables. By accurately forecasting the subsequent activation instance, this strategy significantly optimizes the efficiency of the control system. Moreover, our theoretical analysis demonstrates that the semi-global practical fixed-time stability (SPFTS) criterion guarantees both tracking accuracy and closed-loop stability under state constraints, with convergence time independent of initial conditions. Finally, simulation results reveal that the proposed method significantly decreases the frequency of control command updates while maintaining tracking accuracy.
title Effective Fixed-Time Control for Constrained Nonlinear System
topic Systems and Control
url https://arxiv.org/abs/2505.20870