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Sustainable and flexible industrial human machine interfaces to support adaptable applications in the Industry 4.0 paradigm

机译:可持续且灵活的工业人机界面,以支持工业4.0范例中的适应性应用

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摘要

The Industry 4.0 paradigm introduced several technologies in the industrial manufacturing landscape, highlighting the Cyber Physical Systems, Internet of Things and Visual Computing as some of the key enabling technologies. The fast paced evolution of the technology has to be reflected in the common ground between the machines and the operators. The introduction of advanced, flexible and adaptable Human Machine Interfaces (HMI) will empower the operators with information and custom tools to be more productive in a safer way. This work presents totally functional hardware and a novel software architecture to build flexible advanced HMI interfaces that will provide adaptable and useful information to the operator of the machines. Industrial protocols are used to receive real-time data. A USB camera can be plugged to enable the utilisation of Computer Vision algorithms. A touch display shows adaptable interfaces composed of (a) 3D interactive graphics, (b) texts and 2D images, (c) the camera feed and (d) user interface controls to enable the interaction with the operators. The results present three use cases: (a) an HMI customised for 3D printers, (b) real-time motor control from the HMI and (c) a digital twin of a robotic arm receiving real-time data from the actual robotic arm. This work present data regarding consumption of the hardware for each use case under different work-load.
机译:工业4.0范式在工业制造领域引入了多种技术,重点介绍了网络物理系统,物联网和视觉计算等关键技术。技术的快速发展必须反映在机器和操作员之间的共同点上。先进,灵活和适应性强的人机界面(HMI)的引入将使操作员能够获得信息和定制工具,从而以更安全的方式提高生产率。这项工作提出了功能齐全的硬件和新颖的软件体系结构,以构建灵活的高级HMI接口,这些接口将为机器操作员提供适应性和有用的信息。工业协议用于接收实时数据。可以插入USB摄像头,以利用计算机视觉算法。触摸显示器显示了由(a)3D交互式图形,(b)文本和2D图像,(c)摄像头馈送和(d)用户界面控件组成的自适应界面,以实现与操作员的交互。结果显示了三个用例:(a)为3D打印机定制的HMI,(b)通过HMI进行实时电机控制,以及(c)机械臂的数字孪生子从实际机械臂接收实时数据。这项工作提供了有关在不同工作负载下每个用例的硬件消耗的数据。

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