Abstract
In order to solve the multi-objective planning and trajectory tracking control problem related to maritime autonomous surface ships (MASSs), a new design scheme for autonomous navigation is proposed in this paper, with a receding horizon navigation and control (RHNC) system that contains navigation and control modules. In the navigation module, we designed a superposition field gradient descent local search algorithm based on the cost field, emission field, and guidance field to navigate the MASS reference path, and in the control module, we designed a nonlinear controller that can handle multiple constraints based on the NMPC framework. Under the new scheme, the navigation module completes local path planning to reduce costs and emissions, the control module accomplishes accurate trajectory tracking and real-time collision avoidance, and the information is transmitted in both directions between the two modules to collaboratively complete the MASS navigation and control tasks. We conducted a simulation study of the navigation algorithm and controller and the autonomous navigation system using a Kriso Container ship (KCS). The simulation results demonstrate the effectiveness of the proposed cooperative design scheme in reducing navigation costs and emissions and avoiding autonomous collision avoidances.
Funder
the National Nature Science Foundation of China
Scientific Research Program of Shanghai Science and Technology Commission
Subject
Ocean Engineering,Water Science and Technology,Civil and Structural Engineering
Reference40 articles.
1. Fossen, T.I. (2022, December 15). Marine Control Systems–Guidance. Navigation, and Control of Ships, Rigs and Underwater Vehicles. Marine Cybernetics, Trondheim, Norway, Org. Number NO 985 195 005 MVA, 2002. Available online: www.marinecybernetics.com.
2. Path planning and obstacle avoiding of the USV based on improved ACO-APF hybrid algorithm with adaptive early-warning;Chen;IEEE Access,2021
3. A hybrid path planning algorithm for unmanned surface vehicles in complex environment with dynamic obstacles;Chen;IEEE Access,2019
4. An approach for development of a ship routing algorithm for application in the North Indian Ocean region;Sen;Appl. Ocean Res.,2015
5. A prototype of ship routing decision support system for an operational oceanographic service;Mannarini;TransNav: Int. J. Mar. Navig. Saf. Sea Transp.,2013
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