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AN EARLY MODELING AND SIMULATION APPROACH FOR FAST EVALUATION OF EARLY DESIGN CONCEPTS

机译:早期设计早期设计概念的早期建模与仿真方法

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Being able to quickly model and simulate very early design solutions in the design process is an important practical issue for engineering designers. Early design is characterized by the small amount of quantitative data available at the beginning of the development process. The task is becoming cumbersome for engineers when in addition they do not possess extensive knowledge of the domain of interest. In this context, traditional modeling and simulation methods are disqualified for supporting the early engineering design choices because they require too much details and precise quantitative information. The approach considered in this article to supply the deficiency of traditional modeling methods is combining three domains of physics and mathematics: qualitative physics, dimensional analysis and graph-based representation. The present article develops the general framework which is emerging from this combination. The authors develop the framework to the fast modeling and simulation of an air bearing. The structure of the article is the following, first the basis of the modeling and simulation method are briefly presented. In a second step the entire approach is developed on the case of an air bearing concept with the goal of making the presentation as pedagogical as possible. A causal ordering heuristic is used and combined with the topology of the concept to test. This is gradually leading to a causal graph which is transformed into a flow graph that can be simulated in system dynamics simulation tools. A new and easy approach to discover the laws governing the system dynamic model is also explained. Finally the model is simulated and analyzed. As a result, the method presented in this article offers several advantages: 1- it can be supported by a dedicated computer aided approach, 2- it brings simulation capabilities at very early design stage level where it is seldom present.
机译:能够快速模拟和模拟设计过程中的早期设计解决方案是工程设计师的重要实际问题。早期设计的特点是开发过程开始时可用的少量定量数据。当此外,该任务对工程师造成了繁琐的工程师,他们没有对兴趣领域的广泛知识。在这种情况下,传统的建模和仿真方法被取消资格,以支持早期的工程设计选择,因为它们需要太多的细节和精确的定量信息。本文中考虑的方法为提供传统建模方法的缺陷正在组合物理学和数学域:定性物理,尺寸分析和基于图形的表示。本文开发了从这种组合出现的一般框架。作者将框架开发出快速建模和空气轴承仿真的框架。本文的结构如下,首先介绍建模和仿真方法的基础。在第二步骤中,在空气轴承概念的情况下开发了整个方法,其目的是尽可能使呈现作为教学。使用因果关系启发式,并与概念拓扑进行测试。这逐渐导致因果图转换成可以在系统动态仿真工具中模拟的流程图。还解释了一种新的和简单的方法来发现系统动态模型的规律。最后,模型被模拟和分析。因此,本文中提供的方法提供了几个优点:1-它可以通过专用计算机辅助方法支持,2-它在很少存在的早期设计阶段级别带来模拟能力。

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