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Using open-source microcontrollers to enable digital twin communication for smart manufacturing

机译:使用开源微控制器使数字双通信用于智能制造

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One of the key enabling technologies for the smart factory is the Digital Twin, which can be described as a digital model of a physical entity. In smart manufacturing, a digital twin, also referred to as a cyber-physical production system, comprises three integrated components: the product, the process and the machine. In this paper, the design, fabrication and development of a proof of principal manufacturing digital twin demonstrator is discussed. The manufacturing process is a V-bending operation of a thin metallic plate. All three components of a manufacturing digital twin are represented: the metallic plate product, the bending process and the bending machine. Low-cost, IoT-enabled, open-source microcontrollers are used to communicate between the physical and the digital twins. The microcontroller is used to control machine operations, while also extracting sensor data from the system. It is demonstrated that the digital twin enables real-time stress prediction in the product during the bending process, while also tracking and recording machine performance. An information dashboard has also been developed which presents key performance indicators to the end user.
机译:智能工厂的一个关键支持技术之一是数字双胞胎,可以被描述为物理实体的数字模型。在智能制造中,数字双胞胎,也称为网络物理生产系统,包括三个集成组件:产品,工艺和机器。在本文中,讨论了主制造数字双胞胎示威者证明的设计,制造和发展。制造过程是薄金属板的V型弯曲操作。制造数字双胞胎的所有三个部件都表示:金属板产品,弯曲过程和弯曲机。低成本,启用IOT开源微控制器用于在物理和数字双胞胎之间进行通信。微控制器用于控制机器操作,同时还从系统中提取传感器数据。结果证明,数字双床在弯曲过程中可以在产品中进行实时应力预测,同时还跟踪和记录机器性能。还开发了一种信息仪表板,其向最终用户提供关键性能指标。

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