2022
DOI: 10.3390/aerospace9110674
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Finite-Time Tracking Control Based on Immersion and Invariance with Dynamically Scaling Factor for Agile Missiles

Abstract: A novel finite-time tracking control algorithm with disturbances observer is investigated for agile missiles in the presence of mismatched and matched disturbances. A finite-time disturbance observer with the continuous super-twisting algorithm is designed to quickly estimate the mismatched and matched disturbances. An adaptive law on the basis of immersion and invariance theory (I&I) is proposed to estimate the uncertainty of aerodynamics and compensate for the inaccuracy of modeling. An adaptive dynamic … Show more

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Cited by 2 publications
(1 citation statement)
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“…Finite-time controllers could make control system track a given signal in finite time (Polyakov et al, 2015), which achieves fast convergence and high precision tracking performance. Many finite-time controllers are investigated for spacecraft attitude tracking (Gui et al, 2015; Li et al, 2022; Smaeilzadeh and Golestani, 2019; Tao et al, 2021; Zou et al, 2011; Song et al, 2014). Among the above methods, terminal sliding mode (TSM) is a powerful technique, which is an improved technique of sliding mode control (SMC).…”
Section: Introductionmentioning
confidence: 99%
“…Finite-time controllers could make control system track a given signal in finite time (Polyakov et al, 2015), which achieves fast convergence and high precision tracking performance. Many finite-time controllers are investigated for spacecraft attitude tracking (Gui et al, 2015; Li et al, 2022; Smaeilzadeh and Golestani, 2019; Tao et al, 2021; Zou et al, 2011; Song et al, 2014). Among the above methods, terminal sliding mode (TSM) is a powerful technique, which is an improved technique of sliding mode control (SMC).…”
Section: Introductionmentioning
confidence: 99%