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首页> 外文期刊>International journal of systems science >Optimising multi-product multi-chance-constraint inventory control system with stochastic period lengths and total discount under fuzzy purchasing price and holding costs
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Optimising multi-product multi-chance-constraint inventory control system with stochastic period lengths and total discount under fuzzy purchasing price and holding costs

机译:在采购价格和持有成本模糊的情况下,优化具有随机周期长度和总折扣的多产品多机会约束库存控制系统

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摘要

While the usual assumptions in multi-periodic inventory control problems are that the orders are placed at the beginning of each period (periodic review) or depending on the inventory level they can happen at any time (continuous review), in this article, we relax these assumptions and assume that the periods between two replenishments of the products are independent and identically distributed random variables. Furthermore, assuming that the purchasing price are triangular fuzzy variables, the quantities of the orders are of integer-type and that there are space and service level constraints, total discount are considered to purchase products and a combination of back-order and lost-sales are taken into account for the shortages. We show that the model of this problem is a fuzzy mixed-integer nonlinear programming type and in order to solve it, a hybrid meta-heuristic intelligent algorithm is proposed. At the end, a numerical example is given to demonstrate the applicability of the proposed methodology and to compare its performance with one of the existing algorithms in real world inventory control problems.
机译:尽管多周期库存控制问题的通常假设是订单放置在每个期间的开始(定期检查),或者取决于它们随时可能发生的库存水平(连续检查),但在本文中,我们放宽了这些假设并假设产品两次补货之间的时间间隔是独立且均布的随机变量。此外,假设采购价格是三角模糊变量,订单数量是整数类型,并且存在空间和服务水平约束,则考虑购买产品的总折扣以及延期交货和销售损失的组合考虑到短缺。我们证明该问题的模型是模糊混合整数非线性规划类型,为了解决该问题,提出了一种混合元启发式智能算法。最后,给出了一个数值例子来说明所提出的方法的适用性,并将其性能与现实世界中存在的库存控制问题中的一种算法进行比较。

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