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네 대의 주 추진기를 이용한 무인잠수정의 속도, 심도 및 방위각 제어- 시뮬레이션 및 실험Speed, Depth and Steering Control of Underwater Vehicles with Four Stern Thrusters- Simulation and Experimental Results

Other Titles
Speed, Depth and Steering Control of Underwater Vehicles with Four Stern Thrusters- Simulation and Experimental Results
Authors
전봉환이계홍이지홍홍석원이판묵
Issue Date
2005
Publisher
한국해양공학회
Keywords
Underwater Vehicle; Multivariable LQ Control; Four Stern Thrusters; Tank-test; Underwater Vehicle; Multivariable LQ Control; Four Stern Thrusters; Tank-test; 자율무인잠수정; 다변수 LQ 제어; 네 개의 주 추진기; 수조시험
Citation
한국해양공학회지, v.19, no.2, pp 67 - 73
Pages
7
Journal Title
한국해양공학회지
Volume
19
Number
2
Start Page
67
End Page
73
URI
https://www.kriso.re.kr/sciwatch/handle/2021.sw.kriso/1671
ISSN
1225-0767
2287-6715
Abstract
This paper describes depth, heading and speed control of an underwater vehicle that has four stern thrusters of which forces are coupled in the diving and, steering motion, as well as the speed of the vehicle. The optimal linear quadratic controller is designed based on a linearized- state space model,developed by combining the dynamic equations of speed, steering and diving motion. The designed controller gives provides an optimal thrust distribution, minimizing the given performance index to control speed, depth and heading simultaneously. To validate the performance of the controller, a simulation and tank-test are carried out with DUSAUV (Dual Use Semi-Autonomous Underwater Vehicle), developed by KORDI as a test-bed for testing new underwater technologies. Optimal gains of the controller are tuned, using a computer simulation environment with a nonlinear 6-DOF numerical DUSAUV model, developed by PMM (Planner Motion Mechanism) test. To verify the performance of the presented controller in experiment, a tank-test with DUSAUV is carried out in the ocean engineering basin in KORDI. The experimental results are also compared with the simulation results to investigate the accordance of the numerical and the real mode.
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해양플랜트연구본부 > Deep Ocean Engineering Research Center > 1. Journal Articles

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