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Evaluation of pull production control strategies under uncertainty: An integrated fuzzy AHP-TOPSIS approach

机译:不确定条件下拉式生产控制策略的评估:集成的模糊AHP-TOPSIS方法

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Purpose: Just-In-Time (JIT) production has continuously been considered by industrial practitioners and researchers as a leading strategy for the yet popular Lean production. Pull Production Control Policies (PPCPs) are the major enablers of JIT that locally control the level of inventory by authorizing the production in each station. Aiming to improve the PPCPs, three authorization mechanisms: Kanban, constant-work-in-process (ConWIP), and a hybrid system, are evaluated by considering uncertainty.Design/methodology/approach: Multi-Criteria Decision Making (MCDM) methods are successful in evaluating alternatives with respect to several objectives. The proposed approach of this study applies the fuzzy set theory together with an integrated Analytical Hierarchy Process (AHP) and a Technique for Order Performance by Similarity to Ideal Solution (TOPSIS) method.Findings: The study finds that hybrid Kanban-ConWIP pull production control policies have a better performance in controlling the studied multi-layer multi-stage manufacturing and assembly system.Practical implications: To examine the approach a real case from automobile electro mechanical part production industry is studied. The production system consists of multiple levels of manufacturing, feeding a multi-stage assembly line with stochastic processing times to satisfy the changing demand.Originality/value: This study proposes the integrated Kanban-ConWIP hybrid pull control policies and implements several alternatives on a multi-stage and multi-layer manufacturing and assembly production system. An integrated Fuzzy AHP TOPSIS method is developed to evaluate the alternatives with respect to several JIT criteria.
机译:目的:准时(JIT)生产一直被工业从业人员和研究人员认为是普及的精益生产的主要策略。拉动生产控制策略(PPCP)是JIT的主要推动力,它通过授权每个站点的生产来本地控制库存水平。为了改善PPCP,通过考虑不确定性来评估三种授权机制:看板,在制品恒定工作(ConWIP)和混合系统。设计/方法/方法:多准则决策(MCDM)方法是成功地评估了关于多个目标的替代方案。本研究的拟议方法将模糊集理论与集成的层次分析过程(AHP)和通过类似于理想解决方案的订单性能技术(TOPSIS)方法一起应用。发现:研究发现混合看板-ConWIP拉动生产控制策略在控制所研究的多层多阶段制造和装配系统中具有更好的性能。实际意义:为了研究这种方法,研究了汽车机电零件生产行业的实际案例。该生产系统由多个制造级别组成,为多级装配线提供随机的加工时间,以满足不断变化的需求。原始数据/价值:本研究提出了集成的看板-ConWIP混合拉动控制策略,并在多点装配中实现了多种选择阶段的多层制造和组装生产系统。开发了一种集成的模糊AHP TOPSIS方法,以评估针对几种JIT标准的替代方案。

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