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Modular Mechatronic Modelling for Wind Turbine Generating Systems based on an Integrated Finite Element Approach

机译:基于集成有限元方法的风力发电系统模块化机电一体化建模

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Wind energy is nowadays the fastest-growing energy source in the world, which has been attracting a lot of research interest in wind turbine generator systems. This paper concerns the modelling and simulation of wind turbine generating systems using the flexible multibody simulation software SAMCEF/MECANO. Firstly, it introduces the formulation of an extension of the generalized-a method, which is integrated into the flexible multibody dynamics solver for strongly-coupled simulation of mechatronic systems, and then emphasizes on the doubly-fed induction generator (DFIG) and the controller models, which are developed as modular components of the wind turbine package. The mechatronic systems are simulated upon this strongly-coupled approach and simulation results show the validity of the newly-developed solver and the models. The interest of this work is to analyze the control-generator-structure interactions in a wind turbine. The general aim is to develop a computer-aided tool for customization, fast-prototyping and optimal design of wind turbine systems based on the dynamic simulation of the overall system.
机译:如今,风能是世界上增长最快的能源,在风轮发电机系统中吸引了许多研究兴趣。本文涉及使用灵活的多体仿真软件SAMCEF / MECANO对风力发电机组系统进行建模和仿真。首先,它介绍了通用方法的扩展,该方法已集成到用于机电系统强耦合仿真的柔性多体动力学求解器中,然后着重介绍了双馈感应发电机(DFIG)和控制器模型,作为风力发电机组的模块化组件而开发。用这种强耦合方法对机电系统进行了仿真,仿真结果表明了新开发的求解器和模型的有效性。这项工作的目的是分析风力涡轮机中的控制-发电机-结构相互作用。总体目标是基于整个系统的动态仿真,开发一种用于风轮机系统的定制,快速原型设计和最佳设计的计算机辅助工具。

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