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March 14, 2026Transactions of the Institute of Measurement and Control0 citations

Event-triggered sliding-mode control for underactuated Euler–Lagrange systems subject to external disturbances

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YHYiting HongXLXuyang LouXSXiasheng Shi

Key Points

  • This research aims to develop a robust control method for underactuated Euler–Lagrange systems under external disturbances.
  • Designed an event-triggered sliding-mode control approach for underactuated systems.
  • Applied time-delay estimation for model-free robustness against uncertainties.
  • Incorporated a time-varying gain to enhance control performance.
  • Conducted numerical simulation and physical experiments using an overhead crane system.
  • Demonstrated robustness by effectively reducing tracking errors.
  • Established exponential convergence of the sliding variable and uniform ultimate boundedness of tracking errors.
  • Verified the proposed control scheme's effectiveness through simulations and experiments.

Abstract

This paper presents an event-triggered sliding-mode control method for underactuated Euler–Lagrange systems. The time-delay estimation technique is applied, rendering it model-free and robust against parametric uncertainties and external disturbances. A time-varying gain is incorporated into the sliding variable to enhance control performance for underactuated states. Furthermore, an event-triggered mechanism is employed to reduce communication frequency without compromising control accuracy. Rigorous stability analysis establishes the exponential convergence of the sliding variable, uniform ultimate boundedness of the tracking errors, and the exclusion of Zeno behavior. The effectiveness and robustness of the proposed scheme are validated through numerical simulation and physical experiment on an overhead crane system.

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Cite This Study

Hong et al. (2026) studied this question.

synapsesocial.com/papers/69b4ba3618185d8a39803071https://doi.org/10.1177/01423312261418071
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