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Hybrid frequency-time domain models for dynamic response analysis of marine structures

机译:海洋结构动力响应分析的时频混合模型

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摘要

Time-domain models of marine structures based on frequency domain data are usually built upon the Cummins equation. This type of model is a vector integro-differential equation which involves convolution terms. These convolution terms are not convenient for analysis and design of motion control systems. In addition, these models are not efficient with respect to simulation time, and ease of implementation in standard simulation packages. For these reasons, different methods have been proposed in the literature as approximate alternative representations of the convolutions. Because the convolution is a linear operation, different approaches can be followed to obtain an approximately equivalent linear system in the form of either transfer function or state-space models. This process involves the use of system identification, and several options are available depending on how the identification problem is posed. This raises the question whether one method is better than the others. This paper therefore has three objectives. The first objective is to revisit some of the methods for replacing the convolutions, which have been reported in different areas of analysis of marine systems: hydrodynamics, wave energy conversion, and motion control systems. The second objective is to compare the different methods in terms of complexity and performance. For this purpose, a model for the response in the vertical plane of a modern containership is considered. The third objective is to describe the implementation of the resulting model in the standard simulation environment Matlab/Simulink.
机译:通常基于康明斯方程建立基于频域数据的海洋结构的时域模型。这种类型的模型是一个涉及卷积项的矢量积分微分方程。这些卷积项不适用于运动控制系统的分析和设计。另外,这些模型在仿真时间方面效率不高,并且在标准仿真程序包中易于实现。由于这些原因,文献中已经提出了不同的方法作为卷积的近似替代表示。由于卷积是线性运算,因此可以采用不同的方法来获得传递函数或状态空间模型形式的近似等效线性系统。此过程涉及系统识别的使用,根据识别问题的提出方式,可以使用几个选项。这就提出了一种方法是否比其他方法更好的问题。因此,本文具有三个目标。第一个目标是重新审视替换卷积的某些方法,这些方法已在海洋系统分析的不同领域进行了报道:流体力学,波浪能转换和运动控制系统。第二个目标是在复杂性和性能方面比较不同的方法。为此,考虑了用于现代集装箱船的垂直平面中的响应的模型。第三个目标是描述标准仿真环境Matlab / Simulink中所得模型的实现。

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