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Application of axiomatic design, TRIZ, and mixed integer programming to develop innovative designs: a locomotive ballast arrangement case study

机译:公理化设计,TRIZ和混合整数编程在开发创新设计中的应用:机车镇流器布置案例研究

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In this paper, we present a method incorporating axiomatic design, TRIZ, and mixed integer programming (MIP) to solve engineering design problems. Axiomatic design decomposes the problem into several mutually independent sub-problems, TRIZ generates all feasible design concepts, and MIP optimizes cost and the numerical configuration among available design options. The method is illustrated on a locomotive ballast arrangement case study. Ballast arrangement is a key process for a locomotive assembly, which determines the carrying capacity. Due to the unsophisticated technology requirements, the ballast arrangement process has received little attention. The trend of mass customization, however, demands locomotive manufacturers to provide diverse products with affordable cost and reduced time. Thus, a flexible and easy to implement ballast arrangement process design is sought. The proposed method determines what material combinations, in what quantity, and where in the limited cavities should the ballast be allocated to minimize cost. Using the case study, we demonstrate the advantages in cost reduction and time savings. The synergy of these improvements not only can enhance productivity and agility but also competitive advantage.
机译:在本文中,我们提出了一种结合公理设计,TRIZ和混合整数编程(MIP)的方法来解决工程设计问题。公理化设计将问题分解为几个相互独立的子问题,TRIZ生成所有可行的设计概念,MIP在可用设计选项中优化成本和数值配置。该方法在机车镇流器布置案例研究中得到了说明。镇流器的布置是机车组件的关键过程,它决定了承载能力。由于技术要求不高,镇流器的布置过程很少受到关注。然而,大规模定制的趋势要求机车制造商以负担得起的成本和减少的时间来提供各种产品。因此,寻求一种灵活且易于实现的镇流器布置工艺设计。所提出的方法确定应分配镇流器的材料组合,数量和数量,并在有限的型腔中分配位置,以最大程度地降低成本。通过案例研究,我们证明了降低成本和节省时间的优势。这些改进的协同作用不仅可以提高生产率和敏捷性,而且可以提高竞争优势。

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