考虑多产品收集量不确定的两级逆向物流供应链优化设计

M. Bennekrouf, F. Boudahri, Z. Sari
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引用次数: 3

摘要

近年来,逆向物流供应链已成为制造系统的重要组成部分。由于环保意识和业务可持续性的压力,几家公司必须合作解决部分废物回收问题。这项工作的目的是帮助那些想要追求逆向物流作为利润斧头的公司。本文提出了一个包含收集成本、处理成本和二级市场销售收入的混合整数线性规划(MILP)模型。研究的目的是探讨在能力限制和成本最小化的情况下,不同专业设施之间的最佳物料流动。该模型分为两层:第一级关注收集过程,同时将每种产品的尺寸与标准尺寸进行比较,以优化收集中心的存储容量。然后,为了统一几个产品或几类产品的需求,在第二层增加了运行时间,而不是单个产品的处理能力,以方便多产品案例的研究。该优化模型可以帮助确定多产品网络在拟动态情况下的最优设施位置和物料流。该模型的有用之处在于考虑了收集产品数量的不确定性和投资的累进性,实现了真实的逆向网络设计。为了给研究提供一个说明,我们给出了一个用Lingo 12.0求解器求解采收率的例子。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Optimal design of two levels reverse logistic supply chain by considering the uncertain quantity of collected multi-products
In the recent years, the reverse logistic supply chain has taken an important part in manufacturing systems. Due to the pressures from both environmental awareness and business sustainability, several companies must work in collaboration to solve partially the problem of waste recovery. The purpose of this work is to help those companies who would like to pursue reverse logistics as axe of profit. In this paper we present a mixed-integer linear programming (MILP) model which includes several costs of collection, treatment and sales income from secondary market. The goal of study is to investigate the best material flows between different specialized facilities under capacities constraints and costs minimization. The model is sub divides in two levels: the first level concerns the collect process while a size of each product is compared to a standard size to optimize the storage capacity of collection centers. Then to unify the request of several products or classes of products, in the second level a running time is added instead a processing capacity by product and used to facilitate the study of multi-product case. This proposed optimization model can help to determine the optimal facility location and the material flows of network for multiproduct in pseudo dynamic case. The usefulness of the proposed model is a real design of reverse network with considering the uncertain quantity of collected product and a progressive investment. To give to the study an illustration, we present an example to regard the recovery rate using Lingo 12.0 solver.
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