A Practical Approach for Managing Uncertainty in Remanufacturing: Identifying Leverage Points Using Design Structure Matrix

K. Kimita, J. Matschewsky, T. Sakao
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Abstract

Remanufacturing is a crucial component for our societies to move toward a circular economy. Compared to new manufacturing, the distinctive nature of remanufacturing is found to have high variability, high uncertainty and, thereby, complexity. Therefore, remanufacturers need to enhance their ability to adjust their systems flexibly. Especially, the ability to reconfigure the production planning and control is crucial for reacting to the high variability and uncertainty. However, few practical methods to do that are available so far. Therefore, to solve this problem, this paper aims to propose a method for designing processes of production planning and control in remanufacturing based on the concept of loosely coupled systems. In the proposed method, Design Structure Matrix (DSM) is applied to identify loosely coupled subsystems that enable to localize impacts of changes within themselves. These subsystems are also utilized to appropriately determine leverage points, as well as allocate human resource. Through the application to a real case of remanufacturing, the proposed method was found to be effective for reconfiguring teams and processes for production planning and control depending on given uncertainties, as well as performing production planning and control activities efficiently.
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再制造不确定性管理的实用方法:利用设计结构矩阵识别杠杆点
再制造是我们社会走向循环经济的重要组成部分。与新制造相比,再制造的独特性质是具有高可变性、高不确定性,从而具有复杂性。因此,再制造商需要增强灵活调整系统的能力。特别是,重新配置生产计划和控制的能力对于应对高可变性和不确定性至关重要。然而,到目前为止,很少有实际的方法可以做到这一点。因此,为了解决这一问题,本文旨在提出一种基于松耦合系统概念的再制造生产计划与控制流程设计方法。在该方法中,设计结构矩阵(DSM)用于识别松散耦合的子系统,使其能够在其内部定位变化的影响。这些子系统也被用来适当地确定杠杆点,以及分配人力资源。通过对再制造实例的应用,发现该方法可以有效地根据给定的不确定性重新配置生产计划与控制的团队和过程,并有效地执行生产计划与控制活动。
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