Spacecraft fault-tolerant control using adaptive non-singular fast terminal sliding mode

Zhiguo Han, Ke Zhang, Tianshe Yang, Minghuan Zhang

科研成果: 期刊稿件文章同行评审

73 引用 (Scopus)

摘要

Finite-time convergence control strategies based on adaptive non-singular fast terminal sliding mode are proposed for spacecraft attitude tracking subject to actuator faults, actuator saturations, external disturbances and inertia uncertainties. The designed non-singular fast terminal sliding mode control law can converge in a finite time and avoid singularity, hence it can be used to develop a finite-time fault-tolerant attitude tracking controller that meets multiple constraints. It is demonstrated that the controller is independent of inertia uncertainties and external disturbances with adaptive parameters. The controller designed considers the actuator output torque saturation amplitude requirements and makes the spacecraft accomplish certain operations within the saturation magnitude and without the need for on-line fault estimate. The Lyapunov stability analysis shows that the controller can guarantee the fast convergence of a closed-loop system and has a good fault-tolerant performance on actuator faults and saturations under the multiple constraints on actuator faults, actuator saturations, external disturbances and inertia uncertainties. Numerical simulation verified the good performance of the controller in the attitude tracking control.

源语言英语
页(从-至)1991-1999
页数9
期刊IET Control Theory and Applications
10
16
DOI
出版状态已出版 - 31 10月 2016

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