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The marine systems simulator state-space model representation for dynamically positioned surface vessels

机译:Marine Systems模拟器状态空间模型表示用于动态定位的地面容器

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This paper presents a nonlinear state-space model suitable for numerical simulation and ship motion control system testing for dynamic positioning (DP) operations. This model represents a typical application of the tools included in the Marine Systems Simulator (MSS), and illustrates the modeling philosophy of the MSS. This simulator is a Matlab®/Simulink®-based toolbox specially developed at The Norwegian University of Science and Technology (NTNU) for education, rapid prototyping and evaluation of marine control systems. The model presented here is based on results of standard potential theory tools, which are used to obtain radiation and wave excitation forces. The fluid memory effects associated with the radiation forces are expressed as a reduced-order state-space model. This is a key issue, which allows one to replace the traditional low-/wave-frequency motion superposition principle by a unified state-space model in body-fixed coordinates. The resulting model is suitable for simulation of marine operations requiring station-keeping and low-speed ship manoeuvring in a seaway, and can incorporate viscous forces, wave drift, current loads, wind loads, multi-body interactions, and ship motion control systems.
机译:本文介绍了适用于用于动态定位(DP)操作的数值模拟和船舶运动控制系统测试的非线性状态空间模型。该模型代表了海洋系统模拟器(MSS)中包括的工具的典型应用,并说明了MSS的建模哲学。该模拟器是MATLAB®/Simulink®的工具箱,专门在挪威理工大学(NTNU),用于教育,快速原型设计和对海洋控制系统的评估。这里呈现的模型基于标准潜在理论工具的结果,用于获得辐射和波激发力。与辐射力相关的流体存储器效果表示为阶数 - 空间模型。这是一个关键问题,它允许通过身体固定坐标中的统一状态空间模型来更换传统的低/波频率运动叠加原理。所得到的模型适用于仿真需要在海路中进行站保持和低速船舶操纵的海洋操作,并可以包含粘性力,波浪漂移,电流负荷,风力荷载,多体相互作用和船舶运动控制系统。

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