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Mathematical formulations for a two-echelon inventory routing problem

机译:用于双梯度库存路由问题的数学制片

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Integrated supply chain management is a current practice in the search for overall cost minimization. The vendor management inventory is one of those practices, in which the supplier is responsible for managing the inventory of the customers in accordance with pre-determined management policies. The problem that considers transportation decisions in addition to inventory management is referred to as the Inventory Routing Problem (IRP). The classic IRP considers a system with one supplier that manages the inventory level of a set of customers aiming at defining when and how much products to supply and how to combine customers in routes while minimizing storage and transportation costs. We present an extension of this problem that considers a two-echelon system with indirect deliveries and route decisions at both levels. In this variant, the customers demands have to be met by deliveries through distribution centers with minimum total cost. We propose two mathematical formulations for the two-echelon IRP under different inventory policies. Computational experiments on a set of randomly generated instances evaluate the proposed formulations. The obtained results show that both formulations are able to solve to the proven optimality small-scale instances and one of the models found feasible solutions for almost all instances under all considered inventory policies.
机译:集成供应链管理是在寻求总体成本最小化的过程中的当前做法。供应商管理库存是其中之一,供应商负责按照预先确定的管理政策管理客户的库存。考虑运输决策的问题除了库存管理外,还被称为库存路由问题(IRP)。经典的IRP将一个提供的系统,其中一个供应商管理一组客户的库存级别,旨在定义产品供应以及如何将客户组合在一起,同时最小化存储和运输成本。我们展示了这个问题的延伸,这将考虑一个双梯级系统,其中包括两个级别的间接交付和路由决策。在这种变体中,必须通过分销中心的交付来满足客户要求的需求,以最低总成本。在不同的库存政策下,我们为双梯级IRP提出了两种数学制片。一组随机产生的实例上的计算实验评估了所提出的配方。获得的结果表明,两种配方都能够解决经过验证的最佳小规模实例,其中一个型号为几乎所有所考虑的库存政策的实例找到了可行的解决方案。

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