Observer-based control for fractional-order singular systems with order α (0 < α < 1) and input delay

Bingxin LI, Xiangfei ZHAO, Xuefeng ZHANG, Xin ZHAO

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PDF(647 KB)
Front. Inform. Technol. Electron. Eng ›› 2022, Vol. 23 ›› Issue (12) : 1862-1870. DOI: 10.1631/FITEE.2200294
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Observer-based control for fractional-order singular systems with order α (0 < α < 1) and input delay

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Abstract

In this paper, observer-based control for fractional-order singular systems with order α (0 < α < 1) and input delay is studied. On the basis of the Smith predictor and approximation error, the system with input delay is approximately equivalent to the system without input delay. Furthermore, based on the linear matrix inequality (LMI) technique, the necessary and sufficient condition of observer-based control is proposed. Since the condition is a nonstrict LMI, including the equality constraint, it will lead to some trouble when solving problems using toolbox. Thus, the strict LMI-based condition is improved in the paper. Finally, a numerical example and a direct current motor example are given to illustrate the effectiveness of the strict LMI-based condition.

Keywords

Observer-based control / Singular systems / Fractional order / Input delay / Linear matrix inequality

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Bingxin LI, Xiangfei ZHAO, Xuefeng ZHANG, Xin ZHAO. Observer-based control for fractional-order singular systems with order α (0 < α < 1) and input delay. Front. Inform. Technol. Electron. Eng, 2022, 23(12): 1862‒1870 https://doi.org/10.1631/FITEE.2200294

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2022 Zhejiang University Press
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