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Modeling an automobile steering system using Axiomatic Design's Design Matrix and the Design Structure Matrix

机译:使用axiomatic Design的设计矩阵和设计结构矩阵对汽车转向系统进行建模

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摘要

The automobile steering system can be thought of as a system within a system. The steering system has clear functions and requirements as well as many interrelated components and subsystems including the front tires, wheels, front suspension, steering gear, intermediate shaft, column and steering wheel. System decomposition is an important aspect of this system analysis. The scope of this thesis is the steering system and steering attributes of a particular new model program code named UXXX. An important element of this research is a case study where an error state called Nibble was discovered late in the program. The attempted resolution of the concern caused much turmoil and drove higher component costs, engineering costs, launch delays, warranty costs and decreased customer satisfaction. The main objective of this work was to execute good system analysis to understand key interactions within the system and to provide documentation and knowledge transfer of key discoveries. A requirement based Design Structure Matrix (DSM) was used as the primary methodology for system analysis. In order to construct the DSMs, Axiomatic Design's Design Matrix (DM) was used to develop Functional Requirements (FRs) and Design Parameters (DPs). The requirements based DSM was derived from the DM. DSMs were created from requirements based interactions, spatial interactions and Nibble relationships (Design Parameters influencing Nibble). Herein outlines an approach for synthesizing functional requirements to create a quality Design Matrix and then transform into a DSM. One key discovery is in the development of FRs using a left-to-right and then a right-to-left approach followed by synthesis. Another important development is a matrix comparison
机译:汽车转向系统可以被认为是系统中的一个系统。转向系统具有明确的功能和要求,以及许多相互关联的组件和子系统,包括前轮胎,车轮,前悬架,转向器,中间轴,立柱和方向盘。系统分解是此系统分析的重要方面。本文的范围是特定的新模型程序代码UXXX的转向系统和转向属性。这项研究的重要内容是一个案例研究,其中在程序的后期发现了称为Nibble的错误状态。解决问题的尝试引起了极大的动荡,并导致更高的组件成本,工程成本,发射延迟,保修成本和客户满意度下降。这项工作的主要目的是执行良好的系统分析,以了解系统内的关键交互,并提供关键发现的文档和知识转移。基于需求的设计结构矩阵(DSM)被用作系统分析的主要方法。为了构建DSM,Axiomatic Design的设计矩阵(DM)用于开发功能需求(FR)和设计参数(DP)。基于需求的DSM源自DM。 DSM是根据基于需求的交互,空间交互和半字节关系(影响半字节的设计参数)创建的。本文概述了一种综合功能需求的方法,以创建一个质量设计矩阵,然后转换为DSM。一个关键的发现是使用从左到右然后从右到左的方法进行合成的FR的开发。另一个重要的发展是矩阵比较

著录项

  • 作者

    Bagley Matthew R. 1966-;

  • 作者单位
  • 年度 2005
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  • 原文格式 PDF
  • 正文语种 eng
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