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Evaluation of joint replenishment lot-sizing procedures in rolling horizon planning systems

机译:评估滚动计划系统中的联合补货批量确定程序

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摘要

Joint replenishment problems are commonly encountered in purchasing, manufacturing, and transportation planning. Literature evaluates various algorithmic approaches for solving the joint replenishment problem in a static environment, but their relative performance in a dynamic rolling horizon system is unknown. This research experimentally evaluates nine joint replenishment lot-sizing heuristics and policy design variables when implemented in a dynamic rolling schedule environment. The findings indicate that a single algorithm does excel on both dimensions of schedule cost and stability. Hence, management must trade off these two performance metrics when choosing the best approach for their specific problem. Generally, metaheuristics provide the best cost replenishment schedule, but forward pass based heuristics yield the most stable schedules. The results also indicate that the choice of lot-sizing heuristic is the major cost performance driver in rolling planning systems, with policy design variables (frozen interval and planning horizon length) having little impact. While the simulated annealing heuristic of Robinson et al. (2007a) is the most effective solution procedure for the static joint replenishment problem, the perturbation metaheuristic of Boctor et al. (2004) produces lower schedule costs and greater stability in rolling schedule environments.
机译:联合补给问题通常在采购,制造和运输计划中遇到。文献评估了各种算法方法来解决静态环境中的联合补给问题,但是它们在动态滚动视野系统中的相对性能尚不清楚。本研究在动态滚动计划环境中实施时,通过实验评估了九种联合补货批量确定启发法和策略设计变量。研究结果表明,单一算法在进度成本和稳定性方面都表现出色。因此,在针对特定问题选择最佳方法时,管理层必须权衡这两个绩效指标。通常,元启发式方法提供最佳的成本补充计划,而基于前向传递的启发式方法则可提供最稳定的计划。结果还表明,批量计划启发式的选择是滚动计划系统中主要的成本绩效驱动因素,策略设计变量(冻结间隔和计划范围长度)几乎没有影响。而Robinson等人的模拟退火启发式算法。 (2007a)是静态关节补给问题最有效的解决方法,Boctor等人的摄动变元法。 (2004年)产生较低的调度成本和滚动计划环境中更大的稳定性。

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