Disturbance Observer-Based Singularity-Free Predefined-Time Attitude Tracking Control of Quadrotors: Theory and Experiments
In this article, a disturbance observer-based singularity-free attitude tracking control scheme is presented for quadrotors. Firstly, a predefined-time disturbance observer (PTDO) is constructed to estimate and compensate for external disturbances, enabling the fast convergence of disturbance estima...
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Veröffentlicht in: | IEEE transactions on aerospace and electronic systems 2024-08, p.1-10 |
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Sprache: | eng |
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Zusammenfassung: | In this article, a disturbance observer-based singularity-free attitude tracking control scheme is presented for quadrotors. Firstly, a predefined-time disturbance observer (PTDO) is constructed to estimate and compensate for external disturbances, enabling the fast convergence of disturbance estimation. Then, a singularity-free predefined-time sliding mode surface is devised with the directly nonsingular property, and an auxiliary function is introduced in the controller design process to avoid the potential singularity problem. On this basis, a predefined-time controller without singularity is proposed to drive the attitude tracking errors to the origin within an expected convergence time. Unlike the majority of existing predefinedtime control schemes, this work circumvents the singularity problem without relying on continuous piecewise functions or quadratic-fraction functions, resulting in a more concise and clear stability analysis. Finally, three different control schemes are implemented for experimental comparison, and the results confirm the effectiveness of the proposed control scheme |
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ISSN: | 0018-9251 1557-9603 |
DOI: | 10.1109/TAES.2024.3446754 |