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Robustness analysis of pull strategies in multi-product systems

机译:多产品系统中拉动策略的鲁棒性分析

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Purpose: This paper examines the behaviour of shared and dedicated Kanban allocation policies of Hybrid Kanban-CONWIP and Basestock-Kanban-CONWIP control strategies in multi-product systems; with considerations to robustness of optimal solutions to environmental and system variabilities. Design/methodology/approach: Discrete event simulation and evolutionary multi-objective optimisation approach were utilised to develop Pareto-frontier or sets of non-dominated optimal solutions and for selection of an appropriate decision set for the control parameters in the shared Kanban allocation policy (S-KAP) and dedicated Kanban allocation policy (D-KAP). Simulation experiments were carried out via ExtendSim simulation application software. The outcomes of PCS+KAP performances were compared via all pairwise comparison and Nelson’s screening and selection procedure for superior PCS+KAP under negligible environmental and system stability. To determine superior PCS+KAP under systems’ and environmental variability, the optimal solutions were tested for robustness using Latin hypercube sampling technique and stochastic dominance test. Findings: The outcome of this study shows that under uncontrollable environmental variability, dedicated Kanban allocation policy outperformed shared Kanban allocation policy in serial manufacturing system with negligible and in complex assembly line with setup times. Moreover, the BK-CONWIP is shown as superior strategy to HK-CONWIP. Research limitations/implications: Future research should be conducted to verify the level of flexibility of BK-CONWIP with respect to product mix and product demand volume variations in a complex multi-product system Practical implications: The outcomes of this work are applicable to multi-product manufacturing industries with significant setup times and systems with negligible setup times. The multi-objective optimisation provides decision support for selection of control-parameters such that operations personnel could easily change parameter settings to achieve a new service level without additional optimisations of the system parameters. Originality/value: The examination of the behaviour of the two Kanban allocation policies in HK-CONWIP and BK-CONWIP in a complex multi-product assembly line with setup-times and environmental variabilities, under erratic demand profiles.
机译:目的:本文研究了在多产品系统中混合看板-CONWIP和基础股票-看板-CONWIP控制策略的共享和专用看板分配策略的行为;考虑到针对环境和系统可变性的最佳解决方案的稳定性。设计/方法/方法:离散事件模拟和进化多目标优化方法用于开发Pareto边界或一组非支配的最优解,并为共享看板分配策略中的控制参数选择合适的决策集( S-KAP)和专用看板分配策略(D-KAP)。通过ExtendSim仿真应用软件进行了仿真实验。通过所有成对比较以及尼尔森在环境和系统稳定性可忽略不计的情况下对优秀PCS + KAP进行筛选和选择程序,对PCS + KAP性能的结果进行了比较。为了确定系统和环境可变性下的卓越PCS + KAP,使用拉丁超立方体采样技术和随机优势测试对最佳解决方案的稳健性进行了测试。结果:这项研究的结果表明,在无法控制的环境可变性的情况下,专用的看板分配策略在可忽略的串行制造系统中以及在设置时间短的复杂装配线上的性能优于共享的看板分配策略。此外,BK-CONWIP被证明是优于HK-CONWIP的策略。研究的局限性/含意:应该进行进一步的研究,以验证BK-CONWIP在复杂的多产品系统中相对于产品组合和产品需求量变化的灵活性水平实际意义:这项工作的结果适用于多种产品。安装时间短的产品制造行业和安装时间可忽略的系统。多目标优化为控制参数的选择提供了决策支持,从而使操作人员可以轻松更改参数设置,以达到新的服务水平,而无需额外优化系统参数。独创性/价值:在需求设置不稳定的情况下,检查具有设置时间和环境变化的复杂多产品装配线中HK-CONWIP和BK-CONWIP中两个看板分配策略的行为。

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