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Application of Axiomatic Design principles to control complexity dynamics in a mixed-model assembly system: a case analysis

机译:公理化设计原理在混合模型装配系统中控制复杂性动力学的应用:案例分析

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The purpose of this paper is to test the validity of Axiomatic Design (AD)-based complexity theory as an explanatory construct and as a methodological guidance for the early detection of need for change in flexible manufacturing systems in order to maintain competitiveness even in turbulent environmental conditions. The AD approach postulates that there are general design principles that govern the behaviour of a system. This proposition is empirically investigated for a flexible mixed-model assembly system by the examination of a long-term study conducted in a medium-sized industrial company. The findings of the long-term study suggest the introduction of a company specific cycle of functional periodicity in combination with a set of functional requirements working together as a regular trigger to detect whether the system range is moving away from the once defined manufacturing system's design range. The paper extends the research work made in the field of AD by focusing on mechanisms that help to control the effects of time-dependent complexity in manufacturing (re)design. Examples of methods and lead measures are given that can be used by organisations in early detecting and controlling complexity driven efficiency losses in manufacturing systems.
机译:本文的目的是测试基于公理化设计(AD)的复杂性理论的有效性,该理论可作为解释性构造和方法指导,用于及早发现柔性制造系统中的变更需求,以便即使在动荡的环境中也能保持竞争力条件。 AD方法假定存在控制系统行为的通用设计原则。通过审查在一家中型工业公司中进行的长期研究,对一个灵活的混合模型组装系统进行了经验性研究。长期研究的结果表明,引入了公司特定的功能周期性周期,并结合了一组功能需求,这些功能需求共同作为常规触发因素来检测系统范围是否偏离了曾经定义的制造系统的设计范围。本文通过重点研究有助于控制随时间变化的复杂性在制造(重新)设计中发挥作用的机制,扩展了AD领域的研究工作。给出了方法和引导措施的示例,组织可以使用这些方法和引导措施来早期检测和控制制造系统中复杂性驱动的效率损失。

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