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April 3, 2026Proceedings of the Institution of Mechanical Engineers Part M Journal of Engineering for the Maritime Environment0 citations

Composite observer-based anti-disturbance fault-tolerant stabilization control for sea launch platform with actuator faults and input saturation

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GHGuojie HanZSZhongyu SunQGQingtao Gong

Key Points

  • The aim is to develop a control system that stabilizes sea launch platforms despite actuator faults and input saturation.
  • Developed a composite observer-based control scheme integrating multiple observers.
  • Utilized a disturbance observer for real-time disturbance estimation.
  • Employed an actuator fault observer for online fault diagnostics.
  • Implemented an actuator saturation compensator to mitigate saturation effects.
  • Applied a robustifying term to manage unmodeled dynamics.
  • Successfully achieved simultaneous attenuation of disturbances and faults.
  • Illustrative simulations demonstrated strong stabilization of the sea launch platform.
  • The proposed method showed resilience under varying ocean disturbances.

Abstract

This paper proposes a composite observer-based anti-disturbance and fault-tolerant stabilization for three-degree-of-freedom (3-DOF) sea launch platforms with actuator faults and input saturation. This composite observer-based anti-disturbance and fault-tolerant stabilization control scheme is built through integrating a disturbance observer and a fault observer with the backstepping technique together with an actuator saturation compensator and the robustifying term. The disturbance observer is utilized to provide on-line estimates of the time-varying disturbance in the ocean environment. The actuator fault observer is exploited to achieve the on-line fault estimations of actuator faults. The actuator saturation compensator is employed to attenuate the adverse effects of actuator saturation. The robustifying term is used to attenuate norm-bounded unmodeled dynamics. It is proved that the composite observer-based anti-disturbance and fault-tolerant stabilization controller can achieve the attenuation and rejection of disturbances and faults simultaneously. It is proved by illustrative simulations that the composite observer-based anti-disturbance and fault-tolerant stabilization control strategy can strongly stabilize the sea launch platform.

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Cite This Study

Han et al. (2026) studied this question.

synapsesocial.com/papers/69cf5ced5a333a821460a7c4https://doi.org/10.1177/14750902261420723
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