Angular rate stabilization using fixed-time continuous sliding mode control

Salahudden, D. Giri, S. Dey, B. K. Mukherjee
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Abstract

This paper proposes a novel fault-tolerant control algorithm for angular rate stabilization of satellite system. The control algorithm belongs to the class of super-twisting sliding mode control theorem applicable to relative degree one systems which ensures chattering free control input and also finite-time convergence. Lyapunov stability theorem is used to prove finite-time stability of the closed loop system under designed control input. The expression of convergence time is calculated and is found to be independent of initial conditions. Numerical simulations verify the effectiveness of the proposed control algorithm.
角速率稳定采用定时连续滑模控制
提出了一种新的卫星系统角速率稳定容错控制算法。该控制算法属于适用于相对一阶系统的超扭转滑模控制定理,保证了控制输入无抖振和有限时间收敛。利用李雅普诺夫稳定性定理证明了在设计控制输入下闭环系统的有限时间稳定性。计算了收敛时间的表达式,发现收敛时间与初始条件无关。数值仿真验证了所提控制算法的有效性。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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