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Introduction to quantitative engineering design methods via controls engineering

机译:通过控制工程介绍定量工程设计方法

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Functional modeling is an effective method of depicting products in the design process. Using this approach, product architecture, concept generation, and physical modeling all contribute to the design process to generate a result full of quality and functionality. The functional basis approach provides taxonomy of uniform vocabulary to produce function structures with consistent functions (verbs) and flows (nouns). Material and energy flows dominate function structures in the mechanical engineering domain with only a small percentage including signal flows. Research suggests that the signal flow gap is due to the requirement of "carrier" flows of either material or energy to transport the signals between functions. This research suggests that incorporating controls engineering methodologies may increase the number of signal flows in function structures. We show correlations between the functional modeling and controls engineering in four facets: schematic similarities, performance matching through flows, mathematical function creation using bond graphs, and isomorphic matching of the aforementioned characteristics allows for analogical solutions. Controls systems use block diagrams to represent the sequential steps of the system. These block diagrams parallel the function structures of engineering design. Performance metrics between the two domains can be complimentary when decomposed down to nondimensional engineering units. Mathematical functions of the actions in controls systems can resemble the functional basis functions with bond graphs by identifying characteristic behavior of the functions on the flows. Isomorphic matching, using the schematic diagrams, produces analogies based upon similar functionality and target performance metrics. These four similarities bridge the mechanical and electrical domains via the controls domain. We provide concepts and contextualization for the methodology using domain-agnostic examples. We conclude with suggestion of pathways forward for this preliminary research.
机译:功能建模是在设计过程中描绘产品的有效方法。使用这种方法,产品架构,概念生成和物理建模都有助于设计过程,以生成充满质量和功能的结果。功能基础方法提供统一的词汇分类法,以产生具有一致功能(动词)和流(名词)的功能结构。在机械工程领域,材料和能量流占主导地位,只有一小部分包括信号流。研究表明,信号流间隙是由于需要物质或能量的“载流子”流来在功能之间传输信号而引起的。这项研究表明,结合控制工程方法论可能会增加功能结构中信号流的数量。我们在四个方面显示了功能建模和控件工程之间的相关性:原理图相似性,通过流程的性能匹配,使用键合图的数学函数创建以及上述特征的同构匹配允许类比解决方案。控制系统使用框图表示系统的顺序步骤。这些框图与工程设计的功能结构平行。当分解为无量纲工程单位时,这两个域之间的性能指标可以互补。通过识别功能在流上的特征行为,控制系统中动作的数学功能可以类似于带有键图的功能基础功能。使用示意图的同构匹配基于相似的功能和目标性能指标来产生类比。这四个相似之处通过控制域桥接了机械域和电气域。我们使用与领域无关的示例为该方法提供概念和情境化。最后,我们建议了这项初步研究的前进方向。

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