穿梭式加油机动态定位控制系统设计与实验验证

IF 1.4 4区 工程技术 Q3 ENGINEERING, MECHANICAL
Young-Shik Kim, Jangho Hong, Yun-Ho Kim, H. Sung, Jinwhan Kim
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引用次数: 0

摘要

通过实验和数值分析,探讨了穿梭式油轮动态定位性能评价方法。考虑了一种具有6个推进器(3个隧道推进器、2个方位推进器和1个带方向舵的主螺旋桨)的动态定位穿梭油轮在深水工况下的运行情况。在主反馈控制算法中采用传统的比例导数控制算法来减小位置误差,在动态定位操作中引入抗上发条积分控制算法来抑制稳态误差。提出了一种基于拉格朗日乘子法的最小功耗算法,并将其应用于推进器系统的推力分配。实验中采用扩展卡尔曼滤波将低频运动与实测血管运动分离开来。本研究在相同的环境条件下,采用相同的对照方法,进行了一组实验和数值分析。将实验结果与数值模拟结果进行对比,评价了动态定位梭式加油机的保持性能。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Design and Experimental Validation of a Control System for Dynamic Positioning of a Shuttle Tanker
In this paper, a dynamic positioning performance evaluation procedure for a shuttle tanker is discussed through experimental and numerical analyses. A dynamically positioned shuttle tanker with six thrusters (three tunnel thrusters, two azimuth thrusters, and one main propeller with a rudder), operated in deep water condition was considered. A conventional proportional-derivative control algorithm was adopted for the main feedback control algorithm to reduce the position error, and an anti-windup integral control algorithm was introduced to suppress the steady-state error in the dynamic positioning operation. A minimum power consumption algorithm, based on the Lagrange multiplier method, was utilised in the thrust allocation for the thruster systems. An extended Kalman filter was used in the experiment to separate the low-frequency motion from the measured vessel motion. A set of experiments and numerical analyses were conducted in this study under the same environmental conditions and with the same control methodology. The dynamic positioning operation results obtained by the experiments and numerical simulations were compared to evaluate the station-keeping performance of the dynamically positioned shuttle tanker.
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来源期刊
Transactions of FAMENA
Transactions of FAMENA 工程技术-材料科学:综合
CiteScore
2.20
自引率
30.80%
发文量
15
审稿时长
>12 weeks
期刊介绍: The journal publishes research and professional papers in the following fields: Aerospace Engineering; Automotive Engineering; Biomechanics; Energetics; Engineering Design; Experimental Methods; Industrial Engineering; Machine Tools and Machining; Materials Science; Mathematical Modelling and Simulation; Mechanical Design; Mechanics & Fluid Mechanics; Nanotechnology; Naval Architecture; Numerical Methods; Process Planning; Quality Assurance; Robotics & Mechatronics; Thermodynamics.
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