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Decision process for multiobjective, multi-item production-inventory system via interactive fuzzy satisficing technique

机译:交互式模糊满足技术的多目标多项目生产库存系统决策过程

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摘要

Multiobjective and single-objective inventory models of stochastically deteriorating items are developed in which demand is a function of inventory level and selling price of the commodity. Production rate depends upon the quality level of the items produced and unit production cost is a function of production rate. Deterioration depends upon both the quality of the item and duration of time for storage. The time-related deterioration function follows a two-parameter Weibull distribution in time. In these models, results are derived for both without shortages and partially backlogged shortages. Here, objectives for profit maximization for each item are separately formulated with different goals and compromise solutions of the multiobjective production/inventory problems are obtained by goal programming method. The models are illustrated with numerical examples and results for different formulations are compared. The results for the models assuming them to be a single house integrated business are also obtained using a gradient-based optimization technique and compared with those obtained from the respective decentralized models. Taking man-machine interaction into consideration, interactive solutions are derived for one of the said models - multiobjective model with shortages using interactive fuzzy satisficing method. Pareto optimum and satisficing results are derived for some numerical data. (c) 2005 Elsevier Ltd. All rights reserved.
机译:建立了随机恶化物品的多目标和单目标库存模型,其中需求是库存水平和商品售价的函数。生产率取决于所生产物品的质量水平,单位生产成本是生产率的函数。变质取决于物品的质量和存放时间。与时间有关的劣化函数遵循时间上的两参数威布尔分布。在这些模型中,可以得出没有短缺和部分积压的短缺的结果。在此,为每个项目的利润最大化目标分别制定不同的目标,并通过目标规划方法获得多目标生产/库存问题的折衷解决方案。通过数值示例说明了模型,并比较了不同配方的结果。还使用基于梯度的优化技术获得了假设它们是单家综合业务的模型的结果,并将其结果与从各个分散模型中获得的结果进行了比较。考虑到人机交互作用,使用交互式模糊满足方法为上述模型之一(缺少的多目标模型)导出了交互式解决方案。对于一些数值数据,得出帕累托最优和令人满意的结果。 (c)2005 Elsevier Ltd.保留所有权利。

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