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Automatic generation of design structure matrices through the evolution of product models

机译:通过产品模型的演变自动生成设计结构矩阵

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摘要

Dealing with component interactions and dependencies remains a core and fundamental aspect of engineering, where conflicts and constraints are solved on an almost daily basis. Failure to consider these interactions and dependencies can lead to costly overruns, failure to meet requirements, and lengthy redesigns. Thus, the management and monitoring of these dependencies remains a crucial activity in engineering projects and is becoming ever more challenging with the increase in the number of components, component interactions, and component dependencies, in both a structural and a functional sense. For these reasons, tools and methods to support the identification and monitoring of component interactions and dependencies continues to be an active area of research. In particular, design structure matrices (DSMs) have been extensively applied to identify and visualize product and organizational architectures across a number of engineering disciplines. However, the process of generating these DSMs has primarily used surveys, structured interviews, and/or meetings with engineers. As a consequence, there is a high cost associated with engineers' time alongside the requirement to continually update the DSM structure as a product develops. It follows that the proposition of this paper is to investigate whether an automated and continuously evolving DSM can be generated by monitoring the changes in the digital models that represent the product. This includes models that are generated from computer-aided design, finite element analysis, and computational fluid dynamics systems. The paper shows that a DSM generated from the changes in the product models corroborates with the product architecture as defined by the engineers and results from previous DSM studies. In addition, further levels of product architecture dependency were also identified. A particular affordance of automatically generating DSMs is the ability to continually generate DSMs throughout the project. This paper demonstrates the opportunity for project managers to monitor emerging product dependencies alongside changes in modes of working between the engineers. The application of this technique could be used to support existing product life cycle change management solutions, cross-company product development, and small to medium enterprises who do not have a product life cycle management solution.
机译:处理组件的交互和依存关系仍然是工程学的核心和基本方面,其中冲突和约束几乎每天都得到解决。如果不考虑这些交互作用和依赖性,可能会导致成本高昂的超支,无法满足要求以及冗长的重新设计。因此,对这些依存关系的管理和监视在工程项目中仍然是至关重要的活动,并且在结构和功能上,随着组件,组件交互和组件依存关系数量的增加,挑战也越来越严峻。由于这些原因,支持识别和监视组件交互和依存关系的工具和方法仍然是研究的活跃领域。特别是,设计结构矩阵(DSM)已被广泛应用于跨许多工程学科来识别和可视化产品和组织体系结构。但是,生成这些DSM的过程主要使用了调查,结构化的采访和/或与工程师的会议。结果,与工程师的时间相关的高成本以及随着产品开发不断更新DSM结构的要求。因此,本文的命题是研究是否可以通过监视代表产品的数字模型的变化来生成自动且不断发展的DSM。这包括从计算机辅助设计,有限元分析和计算流体动力学系统生成的模型。本文表明,由产品模型的更改生成的DSM与工程师定义的产品架构以及先前DSM研究的结果相符。此外,还确定了产品体系结构依赖性的进一步级别。自动生成DSM的一项特殊功能是能够在整个项目中连续生成DSM。本文向项目经理展示了监视新兴产品依赖关系以及工程师之间工作模式变化的机会。该技术的应用可用于支持现有的产品生命周期变更管理解决方案,跨公司产品开发以及没有产品生命周期管理解决方案的中小型企业。

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