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Automated Modelica Package Generation of Parameterized Multibody Systems in CATIA

机译:CATIA中参数化多体系统的自动Modelica软件包生成

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摘要

In early stages of the product development process computer-aided design (CAD) and multibody simulation (MBS) work concurrently to build a virtual mechanical system. While CAD handles the geometric design and space analysis, MBS leads to a deeper understanding of the dynamic behavior of the future system. The CAD system has to provide physical and geometrical data, such as mass, inertia and connecting frames in order to improve simulation results. Automation at this point helps to create consistent simulation and design models and shortens the amount of time needed to produce realistic simulation results. Based on Visual Basic for Applications (VBA) a method is implemented to automatically generate an isolated Modelica model package or a single Modelica model from CATIA assemblies or parts. The introduction of design controlling parameter variables in addition to the multibody data enables optimization loops between multibody simulation and the related CAD model (Figure 1). An example demonstrates the three main steps of the presented method, divided into model processing, package generation and parameterized package update. Furthermore, the update process is integrated in a manual parameter variation as well as an automated optimization routine to enable parametric design studies coupled with multibody simulation.
机译:在产品开发过程的早期阶段,计算机辅助设计(CAD)和多体仿真(MBS)同时工作以构建虚拟机械系统。在CAD处理几何设计和空间分析的同时,MBS可以使人们对未来系统的动态行为有更深入的了解。 CAD系统必须提供物理和几何数据,例如质量,惯性和连接框架,以改善仿真结果。此时的自动化有助于创建一致的仿真和设计模型,并缩短产生逼真的仿真结果所需的时间。基于Visual Basic for Applications(VBA),实现了一种方法,该方法可以从CATIA组件或零件自动生成隔离的Modelica模型包或单个Modelica模型。除了多体数据之外,还引入了设计控制参数变量,从而实现了多体仿真与相关CAD模型之间的优化循环(图1)。一个示例演示了所提出方法的三个主要步骤,分为模型处理,程序包生成和参数化程序包更新。此外,更新过程集成在手动参数变化和自动优化例程中,以实现参数设计研究与多体仿真相结合。

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