DocumentCode :
233054
Title :
An Active Disturbance Rejection Controller for ship steering
Author :
Jiang Tao ; Hu Jiangqiang ; Yin Jianchuan ; Ge Beibei
Author_Institution :
Navig. Coll., Dalian Maritime Univ., Dalian, China
fYear :
2014
fDate :
28-30 July 2014
Firstpage :
7970
Lastpage :
7975
Abstract :
An Active Disturbance Rejection Controller (ADRC) was proposed for ship steering to overcome the classic PID defects. The traditional PID control has a wide application on ship autopilot because of its simple structure and obvious efforts. But because of the strong nonlinearity, uncertainty of ship´s movement and the dynamic restraints of rudder, the PID control method can not control the ship perfectly. So an Active Disturbance Rejection Controller (ADRC) was proposed for ship steering. The ADRC is inherited from PID method and developed by improving the classic PID defects. This paper introduces the principle, characteristics and learning algorithm of the ADRC. Then design the ADRC ship controller and apply it to ship steering control. At last, simultate this controlling method for ship steering in consideration of disturbances of wind, wave and current and without them respectively. And by comparing with the results under control of PID controller to show that the ADRC can improve the control performance and has better adapt ability and strong robustness to the ship model.
Keywords :
active disturbance rejection control; control system synthesis; marine control; motion control; ships; steering systems; three-term control; ADRC; PID control; active disturbance rejection controller; control performance; controller design; current disturbance; proportional-integral-derivative control; rudder dynamic restraints; ship autopilot; ship model; ship movement; ship steering; wave disturbance; wind disturbance; Equations; Estimation; Gears; Marine vehicles; Mathematical model; Noise measurement; PD control; ADRC; PID; Robustness; Simulation; ship steering control;
fLanguage :
English
Publisher :
ieee
Conference_Titel :
Control Conference (CCC), 2014 33rd Chinese
Conference_Location :
Nanjing
Type :
conf
DOI :
10.1109/ChiCC.2014.6896332
Filename :
6896332
Link To Document :
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