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A model combining discrete event system simulation and genetic algorithm for buffer allocation in unreliable large production lines

机译:离散事件系统仿真与遗传算法相结合的不可靠大型生产线缓冲区分配模型

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摘要

To solve the difficulties in allocating buffers for unreliable large production lines, this paper investigated a model combining the genetic algorithm with the discrete event system simulation method. In the simulation method, times-to-failure of an unreliable large production line is assumed to follow exponential distribution, whereas times-to-repair and times-to-processing are set to follow an Erlang-k distribution. Using a genetic algorithm based on special position-based mapping means and elitist protection strategy, the buffer configuration of an auto-body welding line is optimized. The simulation of the optimized configuration shows that the performance of the production line, such as productivity and the main average utilization of the workstations, is much improved. This model can optimize the allocation of buffers for unreliable large production lines effectively.
机译:为了解决不可靠的大型生产线分配缓冲区的困难,本文研究了一种将遗传算法与离散事件系统仿真方法相结合的模型。在模拟方法中,假定不可靠的大型生产线的失效时间服从指数分布,而修理时间和加工时间服从Erlang-k分布。使用基于特殊基于位置的映射方法和精英保护策略的遗传算法,优化了车身焊接线的缓冲器配置。优化配置的仿真表明,生产线的性能(例如生产率和工作站的主要平均利用率)得到了很大的提高。该模型可以有效地优化不可靠大型生产线的缓冲区分配。

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