Scenarios of spare parts distribution networks with different characteristics (number of customers, average demand, etc) and spare parts producible via both Additive and Conventional Manufacturing
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Scenarios of spare parts distribution networks with different characteristics, including: Number of customers (N) Average demand of one customer (Demand1Customer) Unitary cost of Additive Manufactured spare parts purchased from a supplier (uc_AM) Unitary cost of Conventionally Manufactured spare parts purchased from a supplier (uc_CM) Unitary cost of one spare part backorder (backorder) Unitary cost of transportation (et_cen) Optimal scenario associated to that distribution centre, choosing between 10 options 1= decentralized scenario with AM spare parts 2= hybrid scenario with degree of centralization equal to 0.25 and AM spare parts 3= hybrid scenario with degree of centralization equal to 0.50 and AM spare parts 4= hybrid scenario with degree of centralization equal to 0.75 and AM spare parts 5= centralized scenario with AM spare parts 6= decentralized scenario with CM spare parts 7= hybrid scenario with degree of centralization equal to 0.25 and CM spare parts 8= hybrid scenario with degree of centralization equal to 0.50 and CM spare parts 9= hybrid scenario with degree of centralization equal to 0.75 and CM spare parts 10= centralized scenario with AM spare parts
本数据集涵盖具备不同特性的备件分销网络场景,具体包含以下维度: 客户总数(N) 单客户平均需求量(Demand1Customer) 从供应商处采购的增材制造(Additive Manufactured)备件单位成本(uc_AM) 从供应商处采购的传统制造(Conventionally Manufactured)备件单位成本(uc_CM) 单备件缺货单位成本(backorder) 单位运输成本(et_cen) 对应配送中心的最优可选方案(共10种可选场景) 以下为10种具体可选场景: 1= 采用增材制造备件的分散式场景 2= 集权度为0.25且采用增材制造备件的混合式场景 3= 集权度为0.50且采用增材制造备件的混合式场景 4= 集权度为0.75且采用增材制造备件的混合式场景 5= 采用增材制造备件的集中式场景 6= 采用传统制造备件的分散式场景 7= 集权度为0.25且采用传统制造备件的混合式场景 8= 集权度为0.50且采用传统制造备件的混合式场景 9= 集权度为0.75且采用传统制造备件的混合式场景 10= 采用增材制造备件的集中式场景



