首页> 外文期刊>RAIRO operations research >INTEGRATION OF PARTS SCHEDULING, MRP, PRODUCTION PLANNING AND GENERALIZED FIXED-CHARGE TRANSPORTATION PLANNING IN THE DESIGN OF A DYNAMIC CELLULAR MANUFACTURING SYSTEM
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INTEGRATION OF PARTS SCHEDULING, MRP, PRODUCTION PLANNING AND GENERALIZED FIXED-CHARGE TRANSPORTATION PLANNING IN THE DESIGN OF A DYNAMIC CELLULAR MANUFACTURING SYSTEM

机译:零件调度,MRP,生产规划和广义固定电荷运输规划在动态蜂窝制造系统设计中的整合

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摘要

In this paper, to integrate the decisions of parts scheduling, Material Requirement Planning (MRP), Production Planning (PP) and Transportation Planning (TP) for designing a Cellular Manufacturing System (CMS) under a dynamic environment, a Mixed-Integer Nonlinear Programming (MINLP) mathematical model is formulated. The proposed mathematical model integrates extensive coverage of significant manufacturing characteristics in designing a CMS to be implemented in a three-layer supply chain. The considered features include markets demands, heterogeneous vehicles, raw materials requirements planning, parts due dates, cell size limits, machines capacity, intra/inter cell material handling time/cost, transportation time/cost, operation time, alternative processing routes in addition to the main decisions of parts scheduling, PP, TP and dynamic cell formation. Also, some novel characteristics are incorporated based on a three-layer supply chain that make the presented model remarkable respect to the literature including (1) In the first layer, planning the orders of raw materials with different lead times and usage coefficients is performed, (2) In the second layer, decisions of dynamic cell formation and parts scheduling are made, and (3) In the third layer, optimal vehicles are selected as a generalized fixed-charge TP based on transportation time and cost to satisfy multi-markets with different demand volumes. The components in the objective function to be minimized include total costs of holding the parts inventories in the markets, backorders, tardiness, transportation of the parts from the plant to the markets, purchase of raw materials, keeping raw materials in the plant warehouse, intercellular/intracellular movements and machine relocation. An illustrative numerical example is solved by the CPLEX solver to illustrate the achievements obtained by the incorporated characteristics in the integrated model. Furthermore, a sensitivity analysis is performed to assess the effects of important parameters on the model performance. Since the proposed model is NP-hard, a Simulated Annealing (SA) algorithm is improved by an elaborately-designed matrix-based chromosome representation is applied to represent all decision variables, as well as a sequential procedure generating initial solutions. Several test problems either generated randomly or taken from the literature with various sizes are solved and the results are compared with the solutions gained using CPLEX solver. The comparisons results show that the designed SA is capable of evolving optimal or near-optimal solutions with reasonable relative gaps in a computationally satisfactory manner.
机译:在本文中,为了在动态环境下整合零件调度,材料需求规划(MRP),生产计划(PP),生产计划(PP)和运输计划(TP)的决定,这是一种混合整数非线性规划的蜂窝制造系统(CMS) (MINLP)制定了数学模型。所提出的数学模型集成了在三层供应链中设计CMS的显着制造特性的广泛覆盖范围。所考虑的功能包括市场需求,异构车辆,原材料需求规划,零件到期日,电池尺寸限制,机器容量,内部/间电池材料处理时间/成本,运输时间/成本,操作时间,除了零件调度,PP,TP和动态电池形成的主要决定。此外,基于三层供应链并入了一些新颖的特征,该三层供应链使得所展示的模型对第一层中包括(1)的文献的显着方面,规划了具有不同转速时间和使用系数的原材料的顺序, (2)在第二层中,制造动态电池形成和部件调度的决定,并且(3)在第三层中,基于运输时间和满足多个市场的成本,选择最佳车辆作为广义固定电荷TP不同的需求量。客观函数中的组件包括持有在市场,倒退,迟到,从工厂到市场的零件运输,购买原材料,在植物仓库中保持原料,细胞内的零件/细胞内运动和机器搬迁。通过CPLEX求解器解决了说明性数值示例,以说明通过集成模型中的结合特性获得的成就。此外,进行敏感性分析以评估重要参数对模型性能的影响。由于所提出的模型是NP - 硬,因此通过精心设计的基于矩阵的染色体表示来改善模拟退火(SA)算法以代表所有判定变量,以及生成初始解决方案的顺序过程。解决了各种尺寸随机产生或从文献中产生的几个测试问题,并将结果与​​使用CPLEX求解器获得的溶液进行比较。比较结果表明,所设计的SA能够以计算方式满意的方式使用合理的相对间隙来演化最佳或接近最佳解决方案。

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