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Using Discrete Event Simulation in multiple System Life Cycles to support Zero-Defect Composite Manufacturing in Aerospace Industry

机译:在多个系统生命周期中使用离散事件仿真来支持航空航天业的零缺陷复合材料制造

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Visual inspections performed by operators are very time-consuming in the manufacturing process of carbon fibre parts in aerospace industry In the EU research project ZAero (Zero-defect manufacturing of composite parts in the aerospace industry) in-situ manual inspection on fibre placement stations thus shall be replaced by automatic inline inspection. To quantify the improvements of the suggested process changes, a series of experiments performed by a discrete event simulation (DES) model was needed to provide necessary key performance indicators (KPI). As the new inline inspection detects events and provides a lot of additional data for them, the simulation model proved to be very useful to support a decision support system (DSS) to help decision makers in determining which of the events count as defects and need to be reworked. In our work we show that a DES model, when properly implemented, is as versatile as a Swiss knife and can make valuable contributions to more than one life cycle of manufacturing systems.
机译:在航空航天业碳纤维零件的制造过程中,操作员进行的目视检查非常耗时。在欧盟研究项目ZAero(航空航天业复合零件的零缺陷制造)中,对纤维铺放站进行了现场手动检查,因此应由自动在线检查代替。为了量化建议的过程更改的改进,需要由离散事件模拟(DES)模型执行的一系列实验来提供必要的关键性能指标(KPI)。随着新的在线检查检测到事件并为事件提供大量附加数据,模拟模型对于支持决策支持系统(DSS)很有帮助,该系统可帮助决策者确定哪些事件被视为缺陷和需要重做。在我们的工作中,我们表明,正确实施DES模型后,其功能就可以与瑞士刀一样广泛,并且可以为制造系统的多个生命周期做出宝贵贡献。

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