Prescribed-time adaptive control of series elastic actuators based on immersion and invariance
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昆明理工大学

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TP273

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    Abstract:

    This paper proposes an immersion and invariance theory-based prescribed-time adaptive control method for a series elastic actuator system with parametric uncertainties. A newly designed time-scale transformation function is employed to overcome the singularity problem caused by traditional time-scale transformations near the prescribed time. Then, the parameter estimation structure of the immersion and invariance method is introduced, and a prescribed-time convergent adaptive law is developed to guarantee the prescribed-time convergence of the parameter estimation error. Furthermore, a prescribed-time sliding mode surface is designed to ensure that the tracking error of the system converges to a given small neighborhood within the prescribed time. Besides, the stability of the closed-loop system is validated via the Lyapunov method. Simulation results verify the effectiveness of the proposed method.

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History
  • Received:May 22,2026
  • Revised:July 18,2026
  • Adopted:July 20,2026
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