Active Rudders for Ship Berthing System Design with Flexible Prescribed Performance

  • Jawhar Ghommam
  • , Maarouf Saad
  • , Ibrahim Al Naimi
  • , Mohammed H. Rahman
  • , Faisal Mnif

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Résumé

Automatic towing operations for non-powered ships at sea constitute a fundamental step toward automating the towing mission at harbor. This paper is devoted to solve one of the sea maneuvering problems that uses an automatic leader tug. The proposed maneuver involves implementing of robust escorting system (also called towing system) of partially non-powered towed cargo ship for an automatic berthing. To enhance the maneuverability of the towed ship, its rudder system is made active throughout the mission. To address the problem of rejecting the time-varying disturbances induced by wind, current and system parametric uncertainties, an adaptive finite-time sliding mode disturbance observer is first proposed. Then, a composite controller with flexible prescribed performance is developed based on a novel unified towing tracking error, which can ensure the geometric state variables and its corresponding velocity meet the prescribed performance constraints at the same time. Stability analysis is conducted to prove finite-time convergence of the towing tracking errors. Finally, numerical simulations validate the proposed approach.

langue originaleAnglais
titre22nd IEEE International Multi-Conference on Systems, Signals and Devices, SSD 2025
EditeurInstitute of Electrical and Electronics Engineers Inc.
Pages1277-1283
Nombre de pages7
ISBN (Electronique)9798331542726
Les DOIs
étatPublié - 2025
Evénement22nd IEEE International Multi-Conference on Systems, Signals and Devices, SSD 2025 - Monastir, Tunisie
Durée: 17 févr. 202520 févr. 2025

Série de publications

Nom22nd IEEE International Multi-Conference on Systems, Signals and Devices, SSD 2025

Conférence

Conférence22nd IEEE International Multi-Conference on Systems, Signals and Devices, SSD 2025
Pays/TerritoireTunisie
La villeMonastir
période17/02/2520/02/25

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