2010Unpublished venueRequires access

Review of nonlinear tracking and setpoint control approaches for autonomous underactuated marine vehicles

Hashem Ashrafiuon, Kenneth R. Muske, Lucas C. McNinch

Open publisher page 92 citations

Abstract

A review of different approaches to setpoint, trajectory tracking, and path following control for autonomous underactuated surface vessels is presented in this work. The review is focused on rigorous control approaches developed using planar autonomous surface vessel models over approximately the last two decades. The controllers are categorized into setpoint, trajectory tracking, and path following approaches with further classification into discontinuous and smooth time-varying control laws for the setpoint control approaches. An overview of the formulation, advantages, and disadvantages of each approach is presented. Although much progress has been made in autonomous underactuated surface vessel control, there remains a need for the evolution of these approaches to achieve robust, real-time control laws that can be implemented on actual autonomous Unmanned Surface Vessel (USV) platforms in the presence of high sea states and external disturbances in uncertain and unstructured environments.

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What this paper is about

A review of different approaches to setpoint, trajectory tracking, and path following control for autonomous underactuated surface vessels is presented in this work. The review is focused on rigorous control approaches developed using planar autonomous surface vessel models over approximately the last two decades. The controllers are categorized into setpoint, trajectory tracking, and path following approaches with further classification into discontinuous and smooth time-varying control laws for the setpoint control approaches. An overview of the formulation, advantages, and disadvantages of each approach is presented. Although much progress has been made in autonomous underactuated surface vessel control, there remains a need for the evolution of these approaches to achieve robust, real-time control laws that can be implemented on actual autonomous Unmanned Surface Vessel (USV) platforms in the presence of high sea states and external disturbances in uncertain and unstructured environments.

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OpenAlex reports 92 citations for this work. Citation counts describe recorded attention and do not establish research quality.

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Available abstract

A review of different approaches to setpoint, trajectory tracking, and path following control for autonomous underactuated surface vessels is presented in this work. The review is focused on rigorous control approaches developed using planar autonomous surface vessel models over approximately the last two decades. The controllers are categorized into setpoint, trajectory tracking, and path following approaches with further classification into discontinuous and smooth time-varying control laws for the setpoint control approaches. An overview of the formulation, advantages, and disadvantages of each approach is presented. Although much progress has been made in autonomous underactuated surface vessel control, there remains a need for the evolution of these approaches to achieve robust, real-time control laws that can be implemented on actual autonomous Unmanned Surface Vessel (USV) platforms in the presence of high sea states and external disturbances in uncertain and unstructured environments.

Key concepts: Setpoint, Underactuation, Trajectory, Unmanned surface vehicle, Control theory (sociology), Control engineering, Tracking (education), Computer science

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