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RMS capacity utilisation: product family and supply chain

机译:RMS产能利用率:产品系列和供应链

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The paper contributes to development of RMS through linkage with external stakeholders such as customers and suppliers of parts/raw materials to handle demand fluctuations that necessitate information sharing across the supply chain tiers. RMS is developed as an integrated supply chain hub for adjusting production capacity using a hybrid methodology of decision trees and Markov analysis. The proposed Markov Chain model contributes to evaluate and monitor system reconfigurations required due to changes of product families with consideration of the product life cycles. The simulation findings indicate that system productivity and financial performance in terms of the profit contribution of product-process allocation will vary over configuration stages. The capacity of an RMS with limited product families and/or limited model variants becomes gradually inoperative whilst approaching upcoming configuration stages due to the end of product life cycles. As a result, reconfiguration preparation is suggested quite before ending life cycle of an existing product in process, for switching from a product family to a new/another product family in the production range, subject to its present demand. The proposed model is illustrated through a simplified case study with given product families and transition probabilities.
机译:本文通过与外部利益相关者(例如客户和零件/原材料的供应商)建立联系以应对需求波动(需要跨供应链层共享信息),为RMS的发展做出了贡献。 RMS被开发为一个集成的供应链枢纽,可使用决策树和马尔可夫分析的混合方法来调整生产能力。提出的马尔可夫链模型有助于评估和监视由于产品系列的变化而需要考虑到产品生命周期的系统重新配置。仿真结果表明,就产品-过程分配的利润贡献而言,系统生产率和财务绩效将在配置阶段有所不同。由于产品生命周期的结束,具有有限产品系列和/或有限型号变型的RMS容量将逐渐失效,同时接近即将到来的配置阶段。因此,建议在即将生产的现有产品的生命周期结束之前进行重新配置准备,以便根据当前需求从生产系列中的产品系列切换到新/另一个产品系列。通过给定产品系列和过渡概率的简化案例研究来说明所建议的模型。

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