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A proposed method to identify requirements significant to mass reduction.

机译:一种提议的方法,用于识别对质量降低有重大意义的要求。

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摘要

Reducing the mass of engineering products holds the potential for significant benefits by reducing material costs, environmental impact, transportation costs, and in the case of vehicles, reducing fuel consumption. While there are many approaches for reducing mass, analyzing requirements has the greatest potential since requirements definition is the earliest phase of product development, where the most design freedom exists. This thesis proposes a requirement analysis method that identifies requirements that impact significant amounts of mass. The research hypothesis is: Engineering requirements can be represented and processed in a systematic manner and linked to physical components and systems, thus enabling mass reduction in reverse engineering and product redesign. The approach proposed in this research follows. Engineering requirements are linked to mass through the creation of a standard requirement statement using pre-processing rules and syntax rules. These rules and guidelines are applicable to authoring new requirements and analyzing existing requirements documentation. The processed engineering requirements are linked to physical components and assemblies based on how the requirements affect the components. These relationships are captured in Design Structure Matrices (DSMs) and Domain Mapping Matrices (DMMs). These DMMs and DSMs are used to attain the amount of mass each requirement affects and the level of coupling of each requirement. Further, representations of the requirements, components, and associated relationships are represented using two software tools. First, a systems engineering tool is used to model the system. Second, this model is exported to a traditional spreadsheet application to perform basic mathematical and data filtering functions. Finally, the method is demonstrated on three subsystems of Family of Medium Tactical Vehicle (FMTV) truck.
机译:通过减少材料成本,环境影响,运输成本以及减少车辆燃料消耗,减少工程产品的质量具有潜在的显着效益。尽管有许多减少质量的方法,但是分析需求具有最大的潜力,因为需求定义是产品开发的最早阶段,其中存在最大的设计自由度。本文提出了一种需求分析方法,该方法可以识别影响大量质量的需求。研究假设是:工程需求可以以系统的方式表示和处理,并与物理组件和系统相关联,从而可以减少逆向工程和产品重新设计的质量。本研究中提出的方法如下。通过使用预处理规则和语法规则创建标准需求声明,将工程需求与质量联系在一起。这些规则和准则适用于创作新需求和分析现有需求文档。根据需求如何影响零部件,将处理后的工程需求链接到物理零部件和装配体。这些关系在设计结构矩阵(DSM)和域映射矩阵(DMM)中捕获。这些DMM和DSM用于获得每个需求影响的质量量以及每个需求的耦合程度。此外,使用两个软件工具表示需求,组件和关联关系的表示。首先,使用系统工程工具对系统进行建模。其次,该模型被导出到传统的电子表格应用程序中,以执行基本的数学和数据过滤功能。最后,在中型战术车(FMTV)卡车系列的三个子系统上对该方法进行了演示。

著录项

  • 作者

    McLellan, James Michael.;

  • 作者单位

    Clemson University.;

  • 授予单位 Clemson University.;
  • 学科 Engineering Mechanical.
  • 学位 M.S.
  • 年度 2010
  • 页码 212 p.
  • 总页数 212
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

  • 入库时间 2022-08-17 11:37:26

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