湖泊波浪模拟环境扰动对比例船舶模型的影响

IF 2 3区 工程技术 Q2 ENGINEERING, MARINE
Andrzej Rak, Anna Miller
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引用次数: 0

摘要

摘要在船舶运动控制系统的开发过程中,在验证和测试阶段经常需要进行软件仿真或在水池或开阔水域进行比例模型实验。本文描述了基于在波兰Iława附近的Silm湖收集的数据建立软件波浪模拟器的过程,在那里使用比例船舶模型进行研究和训练。仿真器结构的基础是一组以高斯白噪声为馈源的整形滤波器。这些滤波器以传递函数的形式构建,对不同的输入风力产生不规则的波浪信号。为了能够模拟大范围的风速,使用了非线性插值。本文提出的湖波模拟方法填补了目前研究的空白,可以准确地模拟小湖上的特征环境扰动,用于比例模型船舶的运动控制实验。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Modelling of Lake Waves to Simulate Environmental Disturbance to a Scale Ship Model
Abstract In the development of ship motion control systems, software simulations or scale model experiments in pools or open water are very often carried out in the verification and testing stages. This paper describes the process of building a software wave simulator based on data gathered on the Silm Lake near Iława, Poland, where scale ship models are used for research and training. The basis of the simulator structure is a set of shaping filters fed with Gaussian white noise. These filters are built in the form of transfer functions generating irregular wave signals for different input wind forces. To enable simulation of a wide range of wind speeds, nonlinear interpolation is used. The lake wave simulation method presented in this paper fills a gap in current research, and enables accurate modelling of characteristic environmental disturbances on a small lake for motion control experiments of scale model ships.
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来源期刊
Polish Maritime Research
Polish Maritime Research 工程技术-工程:海洋
CiteScore
3.70
自引率
45.00%
发文量
20
审稿时长
>12 weeks
期刊介绍: The scope of the journal covers selected issues related to all phases of product lifecycle and corresponding technologies for offshore floating and fixed structures and their components. All researchers are invited to submit their original papers for peer review and publications related to methods of the design; production and manufacturing; maintenance and operational processes of such technical items as: all types of vessels and their equipment, fixed and floating offshore units and their components, autonomous underwater vehicle (AUV) and remotely operated vehicle (ROV). We welcome submissions from these fields in the following technical topics: ship hydrodynamics: buoyancy and stability; ship resistance and propulsion, etc., structural integrity of ship and offshore unit structures: materials; welding; fatigue and fracture, etc., marine equipment: ship and offshore unit power plants: overboarding equipment; etc.
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