Prescribed finite-time boundary control of constrained flexible satellite systems with translational motion modeling

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SCOPUS

18

초록

This study presents an adaptive prescribed finite-time boundary control approach for a flexible satellite system with full-state constraints. The system is represented mathematically by partial differential equations with boundary conditions, and a prescribed finite-time boundary control algorithm is developed through backstepping to suppress center-body vibrations. The Nussbaum function is used to address the nonlinear effects caused by input saturation. A suitable barrier Lyapunov function is constructed to demonstrate that the center-body displacement and velocity remain within the prescribed constraint domain for a predetermined time regardless of their initial values. Additionally, the suggested approach ensures that the system's state variables remain within their allowable ranges and that the closed-loop system signals do not exceed their specified bounds. Simulations are carried out and the outcomes show how effective the suggested strategy is.& COPY; 2023 Elsevier Masson SAS. All rights reserved.

키워드

Boundary control; Prescribed finite-time; Barrier Lyapunov function; Full -state constraints; Flexible satellite; BARRIER LYAPUNOV FUNCTIONS; UNCERTAIN NONLINEAR-SYSTEMS; VIBRATION CONTROL; ADAPTIVE-CONTROL; TRACKING CONTROL
제목
Prescribed finite-time boundary control of constrained flexible satellite systems with translational motion modeling
저자
Zhang, Xing-Yu; Li, Yuan-Xin; Ahn, Choon Ki
DOI
10.1016/j.ast.2023.108470
발행일
2023-09
유형
Article
저널명
Aerospace Science and Technology
권
140