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AN APPLICATION OF THE DESIGN STRUCTURE MATRIX METHODOLOGY TO INTEGRATED CONCURRENT ENGINEERING

机译:设计结构矩阵方法的应用综合并发工程

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This paper integrates two distinct frameworks for managing complexity in the design and development of aerospace systems. In recent years, NASA, ESA, and the private sector have adopted the practice of Integrated Concurrent Engineering (ICE) to increase the pace of conceptual design by bringing together all relevant personnel in the same room to conduct focused, collaborative one-week design studies. The Design Structure Matrix (DSM), on the other hand, is a project management tool used to optimize complex product development processes. Although the DSM methodology explicitly incorporates the concurrent aspects of engineering design, it has not been applied formally to an integrated, rapid design environment such as ICE. Indeed, the goal of the DSM is to decouple independent tasks and to identify those that are inherently coupled, whereas the purpose of the ICE environment is to foster continuous communication so that tasks do not need to be decoupled at all. Nevertheless, the ICE design process is characterized by complex information flow, constant feedback, and multiple design iterations. Therefore, its process is well suited to a DSM-based analysis. This paper demonstrates an application of the DSM framework and methodology to an ICE laboratory and provides recommendations based on the analysis.
机译:本文集成了两个不同的框架,用于管理航空航天系统的设计和开发中的复杂性。近年来,美国宇航局,欧安山欧洲国家兽讨和私营部门采用了综合并发工程(ICE)的做法,通过将所有相关人员汇集在同一房间的焦点,共同开展的,协作一周的设计研究,增加概念设计的步伐。另一方面,设计结构矩阵(DSM)是用于优化复杂产品开发过程的项目管理工具。虽然DSM方法明确地结合了工程设计的并行方面,但它尚未正式应用于冰等集成的快速设计环境。实际上,DSM的目标是与独立的任务解耦并识别那些固有的耦合的任务,而冰环境的目的是促进连续沟通,以便根本不需要解耦任务。然而,冰设计过程的特点是复杂的信息流,恒定反馈和多种设计迭代。因此,其过程非常适合基于DSM的分析。本文演示了DSM框架和方法到冰实验室的应用,并根据分析提供建议。

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