Variation architecture for reducing unnecessary variants in modular product family design by domain mapping and variant-level planning

Kwansuk Oh, J. Lim, Y. Hong
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Abstract

One of the major challenges in variety management of modular product families is to prevent continuously generated variants of design elements. This paper aims to provide guidance on how manufacturing companies can reduce a large number of variants that have already increased from the existing product architectures. This paper introduces a new concept of architecture named variation architecture ( VA) in which relationships between variants in the market, design, and production domains are arranged explicitly for planning variety of a modular product family. Since the VA includes two perspectives which are domain mapping and variant-level planning, it can help companies to systematically establish complex relationships between variants across the domains. This paper describes elements of the three domains, relationship types between elements, and four categories of relationship rules called management rules at the variant-level planning. A framework is proposed for reducing variants through the VA to demonstrate its applicability. In the case study, we apply the framework to a front chassis family having a large number of variants and show that the VA significantly reduces unnecessary variants compared to the currently being produced.
在模块化产品族设计中,通过域映射和变量级规划来减少不必要的变量
模块化产品族的品种管理面临的主要挑战之一是防止设计元素不断产生变体。本文旨在为制造公司如何减少已经从现有产品架构中增加的大量变体提供指导。本文介绍了一种新的体系结构概念,即变型体系结构(VA)。在变型体系结构中,市场、设计和生产领域的变型之间的关系被明确地安排,以规划模块化产品族的变型。由于VA包含两个透视图,即域映射和变量级规划,它可以帮助公司系统地建立跨域的变量之间的复杂关系。本文描述了三个领域的元素、元素之间的关系类型以及变体级规划中称为管理规则的四类关系规则。提出了一种通过VA减少变量的框架,以证明其适用性。在案例研究中,我们将该框架应用于具有大量变体的前底盘系列,并表明与目前正在生产的变体相比,VA显着减少了不必要的变体。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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