Distributed Leader-Follower Formation Control for Autonomous Vessels based on Model Predictive Control

Conference Paper (2021)
Author(s)

M.J. van Pampus (Amsterdam Institute for Advanced Metropolitan Solutions (AMS), Student TU Delft)

A. Haseltalab (TU Delft - Transport Engineering and Logistics)

Vittorio Garofano (TU Delft - Transport Engineering and Logistics)

Vasso Reppa (TU Delft - Transport Engineering and Logistics)

Y.H. Deinema (Amsterdam Institute for Advanced Metropolitan Solutions (AMS))

R.R. Negenborn (TU Delft - Transport Engineering and Logistics)

Research Group
Transport Engineering and Logistics
Copyright
© 2021 M.J. van Pampus, A. Haseltalab, V. Garofano, V. Reppa, Y.H. Deinema, R.R. Negenborn
DOI related publication
https://doi.org/10.23919/ECC54610.2021.9654989
More Info
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Publication Year
2021
Language
English
Copyright
© 2021 M.J. van Pampus, A. Haseltalab, V. Garofano, V. Reppa, Y.H. Deinema, R.R. Negenborn
Research Group
Transport Engineering and Logistics
Pages (from-to)
2380-2387
ISBN (print)
978-1-6654-7945-5
ISBN (electronic)
978-9-4638-4236-5
Reuse Rights

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Abstract

Formation control of autonomous surface vessels (ASVs) has been studied extensively over the last few years since it offers promising advantages. In this paper, two control methods for distributed leader-follower formation control are proposed: A Nonlinear Model Predictive Control (MPC) method and an MPC method using Feedback Linearization. One agent per vessel performs planning and control. The agents exchange information on their current and predicted positions. The two proposed methods are compared with each other and also with a conventional Proportional-Integral (PI) control method. The performance of the proposed strategies is evaluated through simulations and field experiments using small scale vessels. The simulation and field experiment results show that the proposed MPC-based approaches outperform the conventional PI control method.

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