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A Practical Approach of Teaching Digitalization and Safety Strategies in Cyber-Physical Production Systems

机译:网络 - 物理生产系统中数字化和安全策略教学的实用方法

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Digitalization strategies in cyber-physical production systems (CPPS) are one of the key factors of Industry 4.0. The topic not only addresses data preparation, real-time data processing, big data analytics, visualization and machine interface design but also cyber security and safety. Especially, unauthorized access to protected (personal or enterprise) data or unauthorized control of production facilities imply risks when it comes to digitalization. Because of the increased complexity of state-of-the-art technologies, educational institutions need to provide practice-oriented teaching methods in learning factories to help engineers of today understand the impact of those developments.In the light of this fact, this paper presents a practical approach of teaching digitalization strategies in CPPS. Planning, implementing and impacts of digitalization strategies are taught on a use-case with human-robot-collaboration. The objective of the use-case is to realize a real-time obstacle avoidance approach for a collaborative application based on a local positioning system. Here, students not only learn how to model the kinematics of a robot and program a robot but also how to design machine interfaces for real-time data transfer and processing as well as impacts of digitalization on safety and security.The implementation of the use-case is part of the TU Wien teaching portfolio and thus part of its learning factory, where students and apprentices have the possibility to experiment and gain experiences by deliberate error simulations.
机译:网络 - 物理生产系统(CPP)中的数字化策略是工业4.0的关键因素之一。该主题不仅解决了数据准备,实时数据处理,大数据分析,可视化和机器界面设计,还包括网络安全和安全性。特别是,未经授权访问受保护(个人或企业)数据或未经授权的生产设施控制意味着谈到数字化的风险。由于最先进的技术的复杂性增加,教育机构需要在学习工厂提供练习导向的教学方法,以帮助今天的工程师了解这些发展的影响。这篇论文呈现了这一事实的光明CPP中数字化战略教学策略的实用方法。用人机合作的用例教授数字化战略的规划,实施和影响。用例的目的是实现基于局部定位系统的协作应用的实时障碍避免方法。在这里,学生不仅了解如何模拟机器人的运动学和程序的机器人,而且如何设计用于实时数据传输和处理的机器接口以及数字化对安全性和安全性的影响。使用 - 案例是TU WIEN教学组合的一部分,因此其学习工厂的一部分,学生和学徒可以通过故意错误模拟进行实验和获得经验。

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