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Discrete Sliding Mode Control of Spacecraft with Parametric Uncertainty Using Delay-Ahead Prediction

Publish Year: 1398
Type: Conference paper
Language: English
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Document National Code:

AEROSPACE18_113

Index date: 20 May 2020

Discrete Sliding Mode Control of Spacecraft with Parametric Uncertainty Using Delay-Ahead Prediction abstract

The continuous-time sliding mode controller has a good performance only for very small sampling period. In real-world conditions, we are interested in such controllers which take into account the sampling period in the design procedure. This paper deals with the optimal discrete-time sliding mode controller of a micro- spacecraft. In this regard, the mathematical model of a spacecraft has been presented in the state space form, and then an optimal sliding surface equation is chosen as a linear function of the system-state error. A delay ahead predictor and corrector are used in order to compensate the (i)actuators time-delay and (ii)plant–model mismatch and/or uncertainties. The stability condition is analyzed based on Lyapunov approach. Finally, the usefulness of the proposed controller monitored by the simulation.

Discrete Sliding Mode Control of Spacecraft with Parametric Uncertainty Using Delay-Ahead Prediction Keywords:

Discrete Sliding mode-Time Delay Predictor-Optimal Sliding Surface-Attitude Control-Micro-Spacecraft

Discrete Sliding Mode Control of Spacecraft with Parametric Uncertainty Using Delay-Ahead Prediction authors

Ali Kasiri

Ph.D. Student of Space Engineering Aerospace Department, AMIRKABIR University of Technology, Tehran, Iran

Farhad Fani Saberi

Assistant Professor Space Sciences and Technology Institute, AMIRKABIR University of Technology, Tehran, Iran