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首页> 外文期刊>Computers & Industrial Engineering >Multi-stage multi-product multi-period production planning with sequence- dependent setups in closed-loop supply chain
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Multi-stage multi-product multi-period production planning with sequence- dependent setups in closed-loop supply chain

机译:闭环供应链中具有序列相关设置的多阶段多产品多周期生产计划

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摘要

This paper studies multi-stage multi-product multi-period capacitated production planning problem with sequence dependent setups in closed-loop supply chain. In this problem, manufacturing and remanufacturing of each product is regarded consequently, and in addition to the setup for changing products, a setup while changing the processes is needed. To formulate the problem, a mixed-integer programming (MIP) model is presented. Four MlP-based heuristic named non-permutation and permutation heuristics, using rolling horizon are utilized to solve this model. Moreover, a simulated annealing algorithm using a heuristic to provide initial solution is developed to solve the problem. To calibrate the parameters of the proposed simulated annealing algorithm, Taguchi method is applied. The numerical results indicate the efficiency of the proposed meta-heuristic algorithm against MlP-based heuristic algorithms.
机译:本文研究了闭环供应链中具有序列依赖设置的多阶段多产品多周期产能计划规划问题。在该问题中,因此考虑了每种产品的制造和再制造,并且除了用于改变产品的设置之外,还需要在改变处理的同时进行设置。为了解决这个问题,提出了一个混合整数编程(MIP)模型。利用滚动视域,将四种基于MIP的启发式算法分别称为非置换和置换启发法来求解该模型。此外,开发了一种使用启发式方法提供初始解的模拟退火算法来解决该问题。为了校准所提出的模拟退火算法的参数,使用了Taguchi方法。数值结果表明,所提出的元启发式算法相对于基于MIP的启发式算法是有效的。

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