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A genetic algorithm-based heuristic for the dynamic integrated forward/reverse logistics network for 3PLs

机译:基于遗传算法的3PL动态集成正反向物流网络启发式算法

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Today's competitive business environment has resulted in increasing cooperation among individual companies as members of a supply chain. Accordingly, third party logistics providers (3PLs) must operate supply chains for a number of different clients who want to improve their logistics operations for both forward and reverse flows. As a result of the dynamic environment in which these supply chains must operate, 3PLs must make a sequence of inter-related decisions over time. However, in the past, the design of distribution networks has been independently conducted with respect to forward and reverse flows. Thus, this paper presents a mixed integer nonlinear programming model for the design of a dynamic integrated distribution network to account for the integrated aspect of optimizing the forward and return network simultaneously. Since such network design problems belong to a class of NP hard problems, a genetic algorithm-based heuristic with associated numerical results is presented and tested in a set of problems by an exact algorithm. Finally, a solution of a network plan would help in the determination of various resource plans for capacities of material handling equipments and human resources.
机译:当今竞争激烈的商业环境导致作为供应链成员的各个公司之间的合作日益增加。因此,第三方物流提供商(3PL)必须为许多不同的客户运营供应链,这些客户希望改善其正向和反向流动的物流业务。由于这些供应链必须在动态环境中运作,因此3PL必须随着时间的流逝做出一系列相互关联的决策。但是,过去,分配网络的设计是独立于正向和反向流动进行的。因此,本文提出了一种混合整数非线性规划模型,用于动态集成配电网的设计,以解决同时优化前向和返回网络的集成问题。由于此类网络设计问题属于一类NP难题,因此提出了一种基于遗传算法的启发式算法,并结合了相关的数值结果,并通过一组精确算法对一组问题进行了测试。最后,网络计划的解决方案将有助于确定用于物料搬运设备和人力资源能力的各种资源计划。

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