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Heuristic modeling for sustainable procurement and logistics in a supply chain using big data

机译:使用大数据进行供应链中可持续采购和物流的启发式建模

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Drastic climate change has enforced business organizations to manage their carbon emissions. Procurement and transportation is one of the supply chain business operations where carbon emissions are huge. This paper proposes an environmentally sustainable procurement and logistics model for a supply chain. The proposed models are of MINLP (Mixed Integer Non Linear Program) and MILP (Mixed Integer Linear Program) form requiring a variety of the real time parameters from buyer and supplier side such as costs, capacities, lead-times and emissions. Based on real time data, the models provide an optimal sustainable procurement and transportation decision. It is also shown that large sized problems possessing essential 3V's of big data, i.e., volume, variety and velocity consume non-polynomial time and cannot be solved optimally. Therefore, a heuristic (H-1) is also proposed to solve the large sized problems involving big data. T-test significance is also conducted between optimal and heuristic solutions obtained using 42 randomly generated data instances possessing essential characteristics of big data. Encouraging results in terms of solution quality and computational time are obtained. (C) 2017 Elsevier Ltd. All rights reserved.
机译:剧烈的气候变化迫使企业组织对其碳排放进行管理。采购和运输是碳排放量巨大的供应链业务之一。本文提出了一种环境可持续的供应链采购和物流模型。所提出的模型是MINLP(混合整数非线性程序)和MILP(混合整数线性程序)形式,需要买家和供应商方面的各种实时参数,例如成本,产能,交货时间和排放量。这些模型基于实时数据,提供了最佳的可持续采购和运输决策。还表明,拥有大数据必不可少的3V的大型问题(即数量,种类和速度)耗费了非多项式时间,无法最佳解决。因此,还提出了一种启发式(H-1)方法来解决涉及大数据的大型问题。还使用42个具有大数据基本特征的随机生成的数据实例获得的最佳和启发式解决方案之间进行了T检验的显着性。获得了有关解决方案质量和计算时间的令人鼓舞的结果。 (C)2017 Elsevier Ltd.保留所有权利。

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