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Approaching the Dilemma between Plan and Value in Computer Aided Engineering of Production Machines

机译:在生产机器计算机辅助工程中的计划与价值之间的困境

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Today, manufacturers do not fully leverage the potential of Computer Aided Engineering (CAE) for the design of machine tools and production machines. Common design tools for drive systems and other machine components build on an algebraic system description. However, dynamic quality criteria that have a significant impact on the achievable accuracy and productivity cannot be evaluated with purely algebraic descriptions. Generally, dynamic criteria can be incorporated in signal-oriented models from control engineering, but the modeling process is time-consuming, knowledge-intensive and the reusability of models is limited. This paper presents a methodology to simplify the optimization of machine components, such as feed drives, while taking dynamic quality criteria into account. The method is based on the object- and component-oriented modeling language Modelica. For the quick development of models with limited expert-knowledge the models are integrated in an extensible model library. Modern mathematical optimization methods support the systematic search for a combination of system components and parameters with regards to the defined quality criteria. Therefore different design alternatives can quickly be analyzed and compared.
机译:如今,制造商并未完全利用计算机辅助工程(CAE)设计机床和生产机器的潜力。用于驱动系统和其他机器组件的通用设计工具在代数系统描述上构建。然而,不能用纯粹代数描述评估对可实现的准确性和生产率产生重大影响的动态质量标准。通常,动态标准可以从控制工程中的信号导向模型中并入,但建模过程是耗时的,知识密集型和模型的可重用性有限。本文介绍了一种简化机器组件优化,例如饲料驱动器的方法,同时考虑动态质量标准。该方法基于对象和组件导向的建模语言模型。为了快速开发具有有限专业知识的模型 - 知识的模型集成在可扩展模型库中。现代数学优化方法支持系统组件和参数的组合,关于定义的质量标准。因此,可以快速分析和比较不同的设计替代方案。

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