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Development of a Control-Oriented Model of the Vertical Motions of a Fast Ferry

机译:快艇垂直运动的面向控制模型的开发

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As a main part of a research study on the control of active flaps and a T-foil of a high-speed ferry, a control-oriented model of vertical motions of the snip has been developed. The objective of the control is to improve comfort, decreasing the impact of heave and pitch motions. We have experimental data from a towing tank institution and simulations with PRECAL. The model is based on a decomposition of the physic phenomena into two main aspects: the coupling of the ship with distance between waves and the dynamics of a semisubmerged mass. The model can be handled with MATLAB-SIMULINK, which is useful for studying control strategies. The model shows good agreement (model validation) with the experimental and simulated data for regular and irregular waves. The article shows a methodology, based on MATLAB tools, for obtaining control-oriented models from computer-aided design (CAD)-based programs. That means that the control-oriented model can be derived from the ship design, even before the ship is built.
机译:作为对高速渡轮的活动襟翼和T型翼的控制的研究的主要部分,已经开发了针对剪断的垂直运动的面向控制的模型。控制的目的是提高舒适度,减少升沉和俯仰运动的影响。我们拥有来自拖曳槽机构的实验数据以及使用PRECAL进行的模拟。该模型基于将物理现象分解为两个主要方面:船舶与波浪之间的距离的耦合以及半潜质量的动力学。可以使用MATLAB-SIMULINK处理该模型,这对于研究控制策略很有用。该模型与规则和不规则波的实验和模拟数据显示出良好的一致性(模型验证)。本文介绍了一种基于MATLAB工具的方法,该方法可从基于计算机辅助设计(CAD)的程序中获得面向控制的模型。这意味着即使在造船之前,也可以从船舶设计中得出面向控制的模型。

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