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Using product family evaluation graphs in product family design

机译:在产品系列设计中使用产品系列评估图

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摘要

Product family design and platform-based product development have garnered much attention. They have been used to provide nearly customised products to satisfy individual customer requirements and simultaneously achieve economies of scale during production. The inherent challenge in product family design is to balance the trade-off between product commonality (how well the components and functions can be shared across a product family) and variety (the range of different products in a product family). Quantifying this trade-off at the product family planning stage in a way that supports the engineering design process has yet to be accomplished. In this paper, we introduce a graphical evaluation method, the product family evaluation graph (PFEG), that allows designers to choose the 'best' product family design option among sets of alternatives based on their performance with respect to an ideal commonality/variety trade-off determined by a company's particular competitive focus, and guides designers towards a more desirable trade-off between commonality and variety in an existing product family. Two necessary supporting pieces for developing the PFEG are also proposed. One piece is the development of commonality and variety indices to quantitatively capture the degree of commonality and variety in a product family and its functions and components. We introduce two sets of commonality and variety indices - the CDI (commonality versus diversity index) for commonality (CDI_C) and variety (CDI_V), and the CMC (comprehensive metric for commonality) for commonality (CMC_C) and variety (CMC_V) - to achieve this. The other supporting piece is the development of a quantitative representation of the ideal trade-off between commonality and variety in a product family, known as the commonality/variety trade-off angle α, based on the elements that characterise a company's competitive focus and their industry-wide competitors. A linear regression model is used to link the qualitative competitive focus to a quantitative engineering perspective, and then to estimate the ideal trade-off angle. The commonality/variety trade-off angle can then be applied to the PFEG to help designers evaluate a product family or compare product family design alternatives. Most importantly, the PFEG is not just the graph of the two sets of indices; it is the representation of the commonality/variety trade-off relative to the desired competitive focus. Four families of power tools are used to illustrate how the computation of such indices supports product family design evaluation in the PFEG. In this paper, we only use the CDI in the example application, but the CMC can be computed using the same approach.
机译:产品系列设计和基于平台的产品开发引起了广泛关注。它们已用于提供近乎定制的产品,以满足个人客户的需求,同时在生产过程中实现规模经济。产品系列设计中固有的挑战是要在产品通用性(产品系列中的组件和功能可以共享的程度)与品种(产品系列中不同产品的范围)之间权衡取舍。在产品计划生育阶段以支持工程设计过程的方式来量化这种折衷尚待完成。在本文中,我们介绍了一种图形评估方法,即产品族评估图(PFEG),使设计人员可以根据相对于理想共性/品种交易的性能,在备选方案中选择“最佳”产品族设计方案。公司特定的竞争重点决定权衡取舍,并指导设计师在现有产品系列的通用性和多样性之间寻求更理想的权衡。还提出了用于开发PFEG的两个必要的支撑件。一项工作是开发通用性和多样性指数,以定量捕获产品系列及其功能和组件中的通用性和多样性程度。我们介绍了两组通用性和多样性指标-用于通用性(CDI_C)和多样性(CDI_V)的CDI(通用性与多样性指标),以及用于通用性(CMC_C)和多样性(CMC_V)的CMC(通用性综合度量)实现这一目标。另一个支持点是,基于代表公司竞争重点及其要素的要素,开发产品系列中通用性和多样性之间的理想权衡的定量表示法,即通用性/多样性权衡角α。全行业的竞争对手。线性回归模型用于将定性竞争焦点与定量工程观点联系起来,然后估算理想的权衡角度。然后,可以将通用性/多样性权衡角度应用于PFEG,以帮助设计人员评估产品系列或比较产品系列的设计备选方案。最重要的是,PFEG不仅是两组指标的图形,而且还包括其他指标。它是相对于所需竞争焦点的共性/多样性权衡的表示。使用四个系列的电动工具来说明这些指数的计算如何支持PFEG中的产品系列设计评估。在本文中,我们仅在示例应用程序中使用CDI,但是可以使用相同的方法来计算CMC。

著录项

  • 来源
    《International Journal of Production Research》 |2009年第13期|3559-3585|共27页
  • 作者单位

    Life-cycle Engineering Laboratory, Mechanical Engineering - Engineering Mechanics, Michigan Technological University, Houghton, MI, USA;

    The Harold & Inge Marcus Department of Industrial & Manufacturing Engineering, The Pennsylvania State University, University Park, PA, USA;

    Department of Mechanical Engineering, Bucknell University, Lewisburg, PA, USA;

    Life-cycle Engineering Laboratory, Mechanical Engineering - Engineering Mechanics, Michigan Technological University, Houghton, MI, USA;

    Life-cycle Engineering Laboratory, Mechanical Engineering - Engineering Mechanics, Michigan Technological University, Houghton, MI, USA;

    The Harold & Inge Marcus Department of Industrial & Manufacturing Engineering, The Pennsylvania State University, University Park, PA, USA;

    Department of Mechanical Engineering, Bucknell University, Lewisburg, PA, USA;

  • 收录信息 美国《科学引文索引》(SCI);美国《工程索引》(EI);
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    product family; product platform; commonality index; variety index; product family evaluation;

    机译:产品系列;产品平台;共性指数品种指数产品系列评估;

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