A four-quadrant thrust controller for marine propellers with loss estimation and anti-spin : theory and experiments

Q4 Engineering
L. Pivano, T. Johansen, y³vind N Smogeli
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引用次数: 11

Abstract

In this paper a nonlinear thrust controller for fixed pitch marine propellers with torque loss estimation and an antispin strategy is presented. The controller, designed to operate in the four-quadrant plane composed by the shaft speed and the vessel speed, is a combination of a thrust controller developed for calm/moderate sea states and an anti-spin strategy to reduce power peaks and wear-and-tear in extreme sea conditions. The thrust controller aims at producing the demanded thrust independently from the propeller losses. The anti-spin algorithm lowers the shaft speed once large torque losses are detected and increases the shaft speed to normal when the loss situation is considered over. The torque losses are estimated with a nonlinear observer. The performance of the proposed controller is validated by experiments carried out in a towing tank.
具有损失估计和抗自旋的船用螺旋桨四象限推力控制器:理论与实验
提出了一种基于转矩损失估计和抗自旋策略的船用定螺距螺旋桨非线性推力控制器。该控制器设计用于在由轴速和船舶速度组成的四象限平面上运行,结合了用于平静/中等海况的推力控制器和用于减少极端海况下功率峰值和磨损的反旋转策略。推力控制器的目标是不受螺旋桨损失的影响而产生所需的推力。当检测到较大的扭矩损失时,反旋转算法降低轴转速,当考虑到损失情况时,将轴转速提高到正常转速。用非线性观测器估计转矩损失。在拖曳槽中进行了实验,验证了所提控制器的性能。
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来源期刊
Marine Technology and Sname News
Marine Technology and Sname News Engineering-Ocean Engineering
CiteScore
0.60
自引率
0.00%
发文量
0
审稿时长
>12 weeks
期刊介绍: The Marine Technology Society Journal is the flagship publication of the Marine Technology Society. It publishes the highest caliber, peer-reviewed papers, six times a year, on subjects of interest to the society: marine technology, ocean science, marine policy, and education.
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