斯特恩
船体
PID控制器
斜格
课程(导航)
控制理论(社会学)
砰的一声
海洋工程
计算流体力学
工程类
计算机科学
模拟
控制工程
航空航天工程
控制(管理)
人工智能
温度控制
语言学
哲学
出处
期刊:Brodogradnja
[Faculty of Mechanical Engineering and Naval Architecture]
日期:2023-09-01
卷期号:74 (4): 155-178
被引量:4
摘要
Sailing in oblique stern waves causes a ship to make sharp turns and uncontrollable course deviation, which is accompanied by a large heel and sometimes leads to capsizing. Studying the control algorithm in oblique stern waves is imperative because an excellent controller scheme can improve the ship’s course-keeping stability. This paper uses the Maneuvering Modelling Group (MMG) method based on hydrodynamic derivatives and the Computational Fluid Dynamics (CFD)-based self-navigation simulation to simulate ship navigation in waves. This study examines the effect of proportion-integral-derivative (PID) controller schemes on the stability of course maintenance based on hydrodynamic derivatives and 3DOF MMG methods. Then, the optimized PID control parameters are used to simulate the ship’s 6DOF self-propulsion navigation in oblique waves using the CFD method. The nonlinear phenomena during the process, such as side-hull emergency, slamming, and green water, are considered. This study found that the range of the control bandwidth should be optimized based on the ship's heading and wave parameters.
科研通智能强力驱动
Strongly Powered by AbleSci AI