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Optimal Design of the Real-time Production Control System for a General Single-product Assembly Line Based on Fuzzy Logic Control, Genetic Algorithm and Simulation

机译:基于模糊逻辑控制,遗传算法和仿真的一般单产品组装线实时生产控制系统的最佳设计

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In this paper an optimal design approach is proposed for the real-time production control of a general assembly line using fuzzy logic control (FLC) mechanism and genetic algorithm (GA) based on simulation. The optimal control system combines push and FLC policies together. We consider single part type production line with infinite buffers and reliable machines whose process time are determinate. The objective is to minimize the average inventory cost while satisfying uncertain demand. In order to investigate the feasibility and effectiveness of the design approach proposed, an illustrative example is discussed and the optimal system is compared to the original one. The results show that the optimal design methodology is completely feasible and the optimal system holds superior performance.
机译:本文采用了一种最佳的设计方法,用于使用模糊逻辑控制(FLC)机制和遗传算法(GA)基于仿真的大装配线的实时生产控制。最佳控制系统将推送和FLC策略组合在一起。我们考虑用无限缓冲器和可靠的机器考虑单件式生产线,其过程时间是确定的。目的是最小化平均库存成本,同时满足不确定的需求。为了研究所提出的设计方法的可行性和有效性,讨论了说明性示例,并将最佳系统与原始的实施例进行了比较。结果表明,最佳设计方法是完全可行的,最佳系统具有卓越的性能。

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