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首页> 外文期刊>Journal of Engineering Design >Applying axiomatic design theory to the evaluation and optimization of large-scale engineering systems
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Applying axiomatic design theory to the evaluation and optimization of large-scale engineering systems

机译:公理化设计理论在大型工程系统评估与优化中的应用

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摘要

Large-scale engineering systems provide important functions to the human society. The involvement of multiple, competing functionality requirements and lots of resources has imposed high expectations, and at the same time challenges, for achieving reliable, affordable design. Axiomatic design approach has demonstrated its strength in various types of large-scale system design, including vehicles, aircrafts, manufacturing facilities, and so on However, several obstacles are yet to be overcome in proper application of the axioms to a real-world design problem, by both researchers and practitioners. In this work, a systematic methodology is presented for applying Suh's axioms to evaluate and optimize large-scale engineering systems. When using the proposed methodology, design matrices are first obtained to map multiple, competing functionality requirements to their associated physical embodiments at different system hierarchical levels based on Axiom 1, An R/S analysis using surrogate modelling is then conducted on the design matrices to evaluate the existing system design. If the evaluation shows any areas for improvement, a combination of surrogate modelling-based R/S analysis and optimization is used to achieve a less functionally coupled design. An application in a nuclear reactor system design is used to demonstrate the use of the proposed methodology in dealing with real-world design problems. The results show that the proposed methodology provides a promising approach to efficiently evaluate and optimize a large-scale engineering system against multiple, competing design objectives.
机译:大型工程系统为人类社会提供了重要的功能。涉及到多个相互竞争的功能需求和大量资源,对实现可靠,价格合理的设计提出了很高的期望,同时也带来了挑战。公理化设计方法已经在各种类型的大型系统设计中证明了其实力,包括车辆,飞机,制造设施等。然而,在将公理正确应用于实际设计问题时,尚需克服一些障碍。由研究人员和从业人员共同完成。在这项工作中,提出了一种系统的方法,用于应用Suh的公理来评估和优化大型工程系统。当使用所提出的方法时,首先要获得设计矩阵,以基于公理1在不同的系统层次级别将多个竞争功能需求映射到其关联的物理实施例,然后在设计矩阵上使用替代模型进行R / S分析以评估现有的系统设计。如果评估显示有任何需要改进的地方,则可以使用基于替代模型的R / S分析和优化相结合来实现功能较少的设计。核反应堆系统设计中的应用被用来证明所提出的方法论在处理现实世界设计问题中的使用。结果表明,所提出的方法提供了一种有前途的方法,可以针对多个竞争性设计目标有效地评估和优化大型工程系统。

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