Predictive Path Following and Collision Avoidance of Autonomous Vessels in Narrow Channels
Author:
Publisher
Elsevier BV
Subject
Control and Systems Engineering
Reference25 articles.
1. Abdelaal, M., Fränzle, M., and Hahn, A. (2016). NMPC-based Trajectory Tracking and Collison Avoidance of Underactuated Vessels with Elliptical Ship Domain. In 10th IFAC Conference on Control Applications in Marine Systems, 22–27. Elsevier Ltd, Trondheim.
2. Alrifaee, B., Mamaghani, M.G., and Abel, D. (2014). Centralized non-convex model predictive control for cooperative collision avoidance of networked vehicles. In 2014 IEEE International Symposium on Intelligent Control, ISIC 2014, 1583–1588. Antibes, France.
3. Optimal ship navigation with safety distance and realistic turn constraints;Ari;European Journal of Operational Research,2013
4. Bock, H. (1983). Recent Advances in Parameter identification Techniques for O.D.E. In Numerical Treatment of Inverse Problems in Differential and Integral Equations, 95–121. Birkhäuser Boston.
5. Bock, H. and Plitt, K. (1984). A Multiple Shooting Algorithm for Direct Solution of Optimal Control Problems. IFAC Proceedings Volumes, 17(2), 1603–1608.
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