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MEASURING THE COMPLEXITY OF ADDITIVE MANUFACTURING SUPPLY CHAINS

机译:测量增材制造供应链的复杂性

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Complexity has been one of the focal points of attention in the supply chain management domain, as it deteriorates the performance of the supply chain and makes controlling it problematic. The complexity of supply chains has been significantly increased over the past couple of decades. Meanwhile, Additive Manufacturing (AM) not only revolutionizes the way that the products are made, but also brings a paradigm shift to the whole production system. The influence of AM extends to product design and supply chain as well. The unique capabilities of AM suggest that this manufacturing method can significantly affect the supply chain complexity. More product complexity and demand heterogeneity, faster production cycles, higher levels of automation and shorter supply paths are among the features of additive manufacturing that can directly influence the supply chain complexity. Comparison of additive manufacturing supply chain complexity to its traditional counterpart requires a profound comprehension of the transformative effects of AM on the supply chain. This paper first extracts the possible effects of AM on the supply chain and then tries to connect these effects to the drivers of complexity under three main categories of 1) market, 2) manufacturing technology, and 3) supply, planning and infrastructure. Possible impacts of additive manufacturing adoption on the supply chain complexity have been studied using information theoretic measures. An Agent-based Simulation (ABS) model has been developed to study and compare two different supply chain configurations. The findings of this study suggest that the adoption of AM can decrease the supply chain complexity, particularly when product customization is considered.
机译:复杂性已成为供应链管理领域关注的焦点之一,因为它会使供应链的性能下降并使控制成为问题。在过去的几十年中,供应链的复杂性已大大增加。同时,增材制造(AM)不仅革新了产品的制造方式,而且还为整个生产系统带来了范式转变。 AM的影响也扩展到产品设计和供应链。 AM的独特功能表明,这种制造方法会严重影响供应链的复杂性。更高的产品复杂性和需求异质性,更快的生产周期,更高的自动化水平和更短的供应路径是增材制造的特征,可以直接影响供应链的复杂性。将增材制造供应链的复杂性与其传统同行进行比较,需要深刻理解增材制造对供应链的变革作用。本文首先提取了AM对供应链的可能影响,然后尝试将这些影响与复杂性驱动因素联系起来,这些主要驱动力包括以下三个主要类别:1)市场,2)制造技术以及3)供应,计划和基础设施。采用信息理论方法研究了采用增材制造对供应链复杂性的可能影响。已经开发了基于代理的仿真(ABS)模型来研究和比较两种不同的供应链配置。这项研究的结果表明,采用AM可以降低供应链的复杂性,尤其是在考虑产品定制的情况下。

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