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Motion Control of an AUV (Autonomous Underwater Vehicle) Using Fuzzy Gain Scheduling

Rang-Eun Park, Eunju Hwang, Heejin Lee, Mignon Park

Year
2010
Citations
5
Access
Open access

Abstract

The problem of motion control for AUV (Autonomous Underwater Vehicles) is addressed. The utilization of such robotic vehicles has gained an increasing importance in many marine activities. In this paper the objective is to describe how to design and apply FGS (Fuzzy Gain Scheduling) PD (Proportional Derivative) controller for an AUV (Autonomous Underwater Vehicle) to control the yaw and depth of the vehicle by keeping the path of the navigation to a desired point, and/or changing the path according to a set point.

Keywords

UnderwaterFuzzy logicGain schedulingMotion controlComputer scienceFuzzy control systemControl engineeringScheduling (production processes)Motion planningController (irrigation)

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