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Design for variety: A methodology for developing product platform architectures.

机译:多样化设计:一种用于开发产品平台体系结构的方法。

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摘要

A major competitive advantage for any company is the ability to bring products to market faster. An effective method for gaining this advantage is to develop product platform architectures. While companies understand the strategic reasons for developing such platforms, the process to actually design one is not always clear. This dissertation develops a methodology to assist companies in creating these product platform architectures. The process is referred to as the Design for Variety (DFV) method. The goal of the method is to develop an architecture that requires a minimal amount of redesign effort to accommodate future changes.; The DFV method embodies a framework for estimating two types of drivers causing product redesign: external and internal. External drivers are those created by shifting customer needs, industry standards, government regulation, etc. The impact of these changes on the product's components is captured in the Generational Variety Index (GVI). Internal drivers are created by the propagation of change from one component to other components. This coupling between components is quantified with the Coupling Index (CI). Using these indices, the DFV method prescribes detailed steps and heuristics for developing a product architecture less sensitive to future changes, thus reducing redesign cost and effort.; This work has been applied to four different products and is currently being introduced on projects at a Japanese electronics firm. The dissertation demonstrates the method in detail on two products: an inkjet printer and a thermoelectric water cooler. It also contains a description of uses for the GVI and CI in other areas of design research: including the management of current product variety and the optimization of design tasks.
机译:任何公司的主要竞争优势是能够将产品更快地推向市场。获得此优势的有效方法是开发产品平台体系结构。尽管公司了解开发此类平台的战略原因,但实际设计平台的过程并不总是很清楚。本文开发了一种方法,以协助公司创建这些产品平台体系结构。该过程称为“多样性设计(DFV)”方法。该方法的目标是开发一种架构,该架构需要最少的重新设计工作来适应未来的变化。 DFV方法体现了一个框架,用于估计导致产品重新设计的两种类型的驱动程序:外部和内部。外部驱动因素是通过改变客户需求,行业标准,政府法规等而产生的。这些变化对产品组件的影响已记录在世代品种指数(GVI)中。内部驱动程序是通过将变化从一个组件传播到其他组件而创建的。组件之间的耦合通过耦合指数(CI)进行量化。使用这些索引,DFV方法规定了开发对未来变化不太敏感的产品体系结构的详细步骤和启发方法,从而减少了重新设计的成本和工作量。这项工作已应用于四种不同的产品,目前正被日本一家电子公司的项目引入。本文在两种产品上详细说明了该方法:喷墨打印机和热电水冷却器。它还描述了GVI和CI在设计研究的其他领域中的用途:包括当前产品种类的管理和设计任务的优化。

著录项

  • 作者

    Martin, Mark Valeton.;

  • 作者单位

    Stanford University.;

  • 授予单位 Stanford University.;
  • 学科 Engineering Mechanical.; Engineering Industrial.
  • 学位 Ph.D.
  • 年度 2000
  • 页码 153 p.
  • 总页数 153
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 机械、仪表工业;一般工业技术;
  • 关键词

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