Skip to main navigation Skip to search Skip to main content

Robust Path-Following Control of a Container Ship Based on Serret–Frenet Frame Transformation

    • Cleveland State University

    Research output: Contribution to journalArticlepeer-review

    Abstract

    © 2019, The Japan Society of Naval Architects and Ocean Engineers (JASNAOE). A novel disturbance observer-based backstepping controller (DOBBC) is developed and applied to the path-following system of a container ship. Our control objective is to enable the ships to follow a desired path despite the presence of environmental disturbances caused by current, wind, and wave actions. It is particularly challenging to achieve such an objective due to the underactuation and nonlinearity of container ships. To simplify controller design, a tracking error model is developed based on Serret–Frenet frame transformation. The proposed path-following control system is constructed on the model. In DOBBC, the disturbance observer estimates both constant and time-variant environmental disturbances. The backstepping controller compensates the nonlinearity and underactuation of the container ship. A feedback-dominance technique is utilized to design the controller parameters. The stability and robustness of the control system are successfully justified through Lyapunov approach. Simulation results demonstrate that the DOBBC effectively drives the ship to follow a desired trajectory in spite of the existence of time-varying environmental disturbances.

    Original languageAmerican English
    JournalJournal of Marine Science and Technology (Japan)
    Volume25
    DOIs
    StatePublished - Mar 1 2020

    Keywords

    • Container ship
    • Environmental disturbance
    • Feedback-dominance technique
    • Nonlinearity
    • Underactuation

    Disciplines

    • Electrical and Computer Engineering

    Cite this