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The digital twin implementation for linking the virtual representation of human-based production tasks to their physical counterpart in the factory-floor

机译:将基于人的生产任务的虚拟表达联系到工厂地板的物理对应的数字双胞胎实施

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摘要

Production systems empowered by digital simulation tools can be improved in a time and cost-effective approach. The enrichment of digital simulations with sensor data, can enhance their realism and improve the accuracy of their results. Hence, this study proposes an implementation of the digital twin approach as part of a wider cyber-physical system (CPS) to enable the optimisation of the planning and commissioning of human-based production processes using simulation-based approaches. This is achieved through a) sensor data fusion and motion recognition of human activities in a factory floor and b) knowledge management mechanism for capturing the implicit knowledge of the task execution. A case study from the intra-factory logistics operations in the white goods industry, demonstrates the feasibility of the proposed approach, by enriching the simulation of manual assembly operations with the operator's knowledge in the form of spatiotemporal constraints.
机译:通过数字仿真工具赋权的生产系统可以在时间和经济高效的方法中提高。 使用传感器数据进行数字模拟的丰富,可以增强其现实主义并提高结果的准确性。 因此,本研究提出了作为更广泛的网络物理系统(CPS)的数字双方法的实施,以便利用基于模拟的方法优化基于人的生产过程的规划和调试。 这是通过A)传感器数据融合和运动识别的工厂地板中的人类活动和B)知识管理机制来实现,用于捕获任务执行的隐含知识。 采用工厂内部物流业务的案例研究,展示了所提出的方法的可行性,通过丰富了手动组装操作,以运营商以时尚限制的形式进行了仿真。

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