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Integrated forward and reverse logistics network design for a hybrid assembly-recycling system under uncertain return and waste flows: A fuzzy multi-objective programming

机译:不确定收益和废物流下混合装配-回收系统的正向和反向集成物流网络设计:模糊多目标规划

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This paper addresses the optimal design of a hybrid assembly-recycling network that simultaneously integrates the forward and reverse logistics among its multi-product multi-echelon superstructure. Multiple sources of raw materials including components and parts are considered at different stages of the forward assembly process. The problem investigates three recycling options for final products, semi-products and modules. Various types of uncertainties on return flow and waste flow are investigated. To optimize the dual-system superstructure, the problem is hereby modeled by a fuzzy mixed integer linear programming approach. Piecewise linear membership functions are constructed for the objectives to represent the diversified satisfactory degrees which preferably comply with the real-world decision scenarios. Further, an interactive fuzzy optimization approach is developed to solve the problem by differentiating the piece-wise sections of satisfactory degrees. Finally, an electronic assembly plant with its own recycling process is chosen as the industrial case to implement the proposed approach. Sensitivity analysis and comparison under different scenarios are presented to demonstrate the effectiveness on obtaining compromised solutions under diversified satisfactory degrees in such an uncertain environment. (C) 2019 Elsevier Ltd. All rights reserved.
机译:本文提出了一种混合装配-回收网络的最优设计,该网络同时在其多产品多级上层建筑之间整合了正向和反向物流。在向前组装过程的不同阶段,将考虑多种原材料来源,包括零部件。该问题调查了最终产品,半成品和模块的三种回收选项。研究了回流和废物流的各种不确定性。为了优化双系统上部结构,通过模糊混合整数线性规划方法对问题进行建模。为目标构建分段线性隶属函数,以表示最好满足实际决策场景的多样化满意程度。此外,开发了交互式模糊优化方法以通过区分满意程度的分段部分来解决该问题。最后,选择具有自己的回收过程的电子组装厂作为工业案例来实施所提出的方法。提出了在不同情况下的灵敏度分析和比较,以证明在这种不确定环境下,在各种满意程度下获得折衷解的有效性。 (C)2019 Elsevier Ltd.保留所有权利。

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