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Production and uncertain green subcontracting control for an unreliable manufacturing system facing emissions

机译:面对排放的不可靠制造系统的生产和不确定的绿色分包控制

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Faced with environmental legislation imposed by authorities, manufacturers must review their short- and mid-long-term strategies in order to integrate the environmental dimension into the decision-making process. In that context, in this paper, we address the problem of an unreliable manufacturing system producing one product family type to meet a demand. We consider that the manufacturing system's operations generate harmful emissions into the environment. Hence, in addition to inventory, production and backlog costs, an environmental penalty is imposed when the emission level reaches a specific limit (cap approach). Because technology investments in production clean processes is often heavy and to improve its environmental strategy, we consider that demand can be partially satisfied by an unreliable subcontractor. The subcontractor which is characterized by a high development and innovation on sustainable technology requires a high selling cost and a random availability. This work examines this decision-making problem in order to propose a new joint production and subcontracting control policy which takes into account the emission level. The objective is to optimize the total cost, which includes the inventory, backlog, production, emission, and subcontracting costs, over an infinite horizon. An experimental approach combining simulation, experimental design and response surface methodology is used to solve the problem. Through numerical examples and further sensitivity analysis, the structure of the control policy is confirmed and analyzed. Thanks to the practical usefulness of the resolution approach, we provide a decision support system to help managers in deciding whether or not to subcontract, depending on green subcontractor characteristics (availability and cost).
机译:面对当局制定的环境法规,制造商必须审查其短期和中期长期战略,以便将环境因素纳入决策过程。在这种情况下,本文将解决不可靠的生产系统只能生产一种产品家族类型来满足需求的问题。我们认为制造系统的运营会向环境中产生有害排放物。因此,除了库存,生产和积压成本外,当排放水平达到特定限制时(上限法),还会施加环境罚款。由于清洁生产过程中的技术投资通常很重,并且为了改善其环境战略,我们认为不可靠的分包商可以部分满足需求。以可持续技术的高度发展和创新为特征的分包商需要高昂的销售成本和随机供应。这项工作研究了这个决策问题,以便提出一个新的联合生产和分包控制政策,该政策考虑了排放水平。目的是在无限的范围内优化总成本,包括库存,积压,生产,排放和分包成本。一种将模拟,实验设计和响应面方法相结合的实验方法用于解决该问题。通过数值算例和进一步的敏感性分析,确定并分析了控制策略的结构。由于解决方案方法的实用性,我们提供了决策支持系统,可帮助管理人员根据绿色分包商的特征(可用性和成本)来决定是否分包。

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