Modeling, parameter identification, guidance and control of an unmanned surface vehicle with experimental results

被引:31
作者
Abrougui, Helmi [1 ]
Nejim, Samir [1 ]
Hachicha, Saber [1 ]
Zaoui, Chiheb [1 ]
Dallagi, Habib [1 ]
机构
[1] Naval Acad, Res Lab Marine Technol & Naval Syst, Tunis, Tunisia
关键词
USV; Mathematical modeling; Autopilot; Sliding mode control; Path following and waypoint tracking; SYSTEM-IDENTIFICATION; MOTION;
D O I
10.1016/j.oceaneng.2021.110038
中图分类号
U6 [水路运输]; P75 [海洋工程];
学科分类号
0814 ; 081505 ; 0824 ; 082401 ;
摘要
This work proposes an autopilot scheme for self-steering an Unmanned Surface Vehicle (USV) in terms of heading and speed control, route following and waypoints tracking. The majority of regulators developed in the literature only provide heading control, which is a considerable weakness since the drift effects due to wind and marine currents cause the USV to move away from the planned path. This work deals with this problem and firstly proposes a mathematical model with three degrees of freedom for simulating the USV behavior. Second, USV parameter are calculated experimentally, and then an autopilot system is designed letting the USV to rapidly and smoothly reach a desired path and remain precisely on it. The developed autopilot, which is based on sliding mode control, consists of two levels of regulation, low-level controller for speed and heading control and a high-level controller for generating the desired speed and heading according to two different navigation modes: waypoints tracking and/or path following. Experimental results are carried out to verify the effectiveness of the proposed autopilot in term of heading control for waypoints tracking.
引用
收藏
页数:19
相关论文
共 35 条
[1]  
Abrougui H., 2018, BACKSTEPPING CONTROL
[2]   Autopilot Design for an Autonomous Sailboat Based on Sliding Mode Control [J].
Abrougui, Helmi ;
Dallagi, Habib ;
Nejim, Samir .
AUTOMATIC CONTROL AND COMPUTER SCIENCES, 2019, 53 (05) :393-407
[3]  
Abrougui H, 2019, NAV ENG J, V131, P91
[4]   Comparison of LQG and Adaptive PID Controller for USV Heading Control [J].
Asfihani, Tahiyatul ;
Arif, Didik Khusnul ;
Subchan ;
Putra, Firdaus Priyatno ;
Firmansyah, Moch Ardi .
INTERNATIONAL CONFERENCE ON MATHEMATICS: PURE, APPLIED AND COMPUTATION, 2019, 1218
[5]   IDENTIFICATION OF SHIP STEERING DYNAMICS [J].
ASTROM, KJ ;
KALLSTROM, CG .
AUTOMATICA, 1976, 12 (01) :9-22
[6]  
Bertram Volker, UNMANNED SURFACE VEH
[7]  
Carreno Moreno J., 2012, MATH MODEL MANOEUVRA
[8]  
Erfianto B., 2021, KINETIK GAME TECHNOL
[9]  
Fan YS, 2015, CHIN CONTR CONF, P8472, DOI 10.1109/ChiCC.2015.7260979
[10]  
Fossen T.I., 2021, Handbook of Marine Craft Hydrodynamics and Motion Control