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Efficient Simulation Method for General Assembly Systems With Material Handling Based on Aggregated Event-Scheduling

机译:基于聚集事件调度的带物料处理的通用装配系统高效仿真方法

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Performance evaluation of complex manufacturing systems is challenging due to many factors such as system complexity, parameter uncertainties, problem size, just to name a few. In many cases when a system is too complex to model using mathematical formulas, simulation is used as an effective alternative to conduct system analysis. A manufacturing system is a good example of such cases where both system performance and system complexity are greatly impacted by material handling (MH) strategy, management, and operational control. In this paper, we study vehicle general assembly (GA) system with MH, and focus on developing an efficient simulation method for modeling and analysis where traditional simulation methods may suffer from computation intensity. Making use of the partial system decomposability, we introduce an aggregated event-scheduling simulation method with two-level framework. A dividing mechanism with boundary conditions is employed in top-level simulation to divide the global event list into small sizes. A timing-focuses strategy based on max-plus algebra is applied in bottom-level local simulation to further reduce local event lists. With this new method it is possible to mimic real production systems fast and accurately within a reasonable computational time frame. The effectiveness and efficiency of the new simulation method are validated through experimental results.
机译:由于许多因素,例如系统复杂性,参数不确定性,问题大小等,复杂制造系统的性能评估具有挑战性。在许多情况下,当系统过于复杂而无法使用数学公式进行建模时,可以将模拟用作进行系统分析的有效替代方法。制造系统就是此类情况的一个很好的例子,其中材料性能(MH)策略,管理和操作控制极大地影响了系统性能和系统复杂性。在本文中,我们研究了带有MH的车辆总装(GA)系统,并着重于开发一种有效的仿真方法,用于建模和分析,而传统的仿真方法可能会受到计算强度的困扰。利用部分系统可分解性,我们引入了具有两级框架的聚合事件调度仿真方法。在顶层仿真中使用具有边界条件的划分机制将全局事件列表划分为较小的大小。在底层本地模拟中应用了基于最大加数代数的时序关注策略,以进一步减少本地事件列表。使用这种新方法,可以在合理的计算时间范围内快速,准确地模拟实际生产系统。实验结果验证了新仿真方法的有效性和有效性。

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