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DIGITAL TWIN: COLLABORATIVE VIRTUAL REALITY ENVIRONMENT FOR MULTI-PURPOSE INDUSTRIAL APPLICATIONS

机译:数字双胞胎:多用途工业应用的协作虚拟现实环境

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Industrial Digital Twins (DT) is the precise virtual representation of the manufacturing environment and mainly consists of the system-level simulation, which combines both manufacturing processes and parametric models of the product. As being one of the pillars of the Industry 4.0 paradigm, DT-s are widely integrated into the existing factories, enhancing the concept of the virtual factories. View from the research perspective is that experiments on the Internet of Things, data acquisition, cybersecurity, telemetry synchronization with physical factories, etc. are being executed in those virtual simulations. Moreover, new ways of interactions and interface to oversee, interact and learn are being developed via the assistance of Virtual Reality (VR) and Augmented Reality (AR) technologies, which are already widely spread on the consumer market. However, already, VR is being used widely in existing commercial software packages and toolboxes to provide students, teachers, operators, engineers, production managers, and researchers with an immersive way of interacting with the factory while the manufacturing simulation is running. This gives a better understanding and more in-depth knowledge of the actual manufacturing processes, not being directly accessing those. However, the virtual presence mentioned above experience is limited to a single person. It does not enable additional functionalities for the simulations, which can be re-planning or even re-programming of the physical factory in an online connection by using VR or AR interfaces. The main aim of the related research paper is to enhance already existing fully synchronized with physical world DT-s with multi-user experience, enabling factory operators to work with and re-program the real machinery from remote locations in a more intuitive way instead thinking about final aim than about the process itself. Moreover, being developed using real-time platform Unity3D, this multiplayer solution gives opportunities for training and educational purposes and is connecting people from remote locations of the world. Use-cases exploits industrial robots placed in the Industrial Virtual and Augmented Reality Laboratory environment of Tallinn University of Technology and a mobile robot solution developed based on a collaboration between the University of Southern Denmark and a Danish company. Experiments are being performed on the connection between Estonia and Denmark while performing re-programming tasks of the physical heavy industrial robots. Furthermore, the mobile robot solution is demonstrated in a virtual warehouse environment. Developed methods and environments together with the collected data will enable us to widen the use-cases with non-manufacturing scenarios, i.e., smart city and smart healthcare domains, for the creation of a set of new interfaces and multiplayer experiences.
机译:工业数字双胞胎(DT)是制造环境的精确虚拟表示,主要包括系统级仿真,它结合了产品的制造过程和参数模型。作为行业的支柱之一,DT-S广泛集成到现有的工厂中,增强了虚拟工厂的概念。从研究角度来看,在这些虚拟模拟中正在执行关于事物互联网,数据采集,网络安全,遥测同步的实验。此外,正在通过虚拟现实(VR)和增强现实(AR)技术的协助开发了监督,互动和学习的新方法,并在消费市场上广泛传播。但是,VR已经广泛用于现有的商业软件包和工具箱中,为学生,教师,运营商,工程师,生产经理和研究人员提供沉浸式方式与工厂进行互动,而制造模拟运行。这提供了更好的理解和更深入地了解实际制造过程,而不是直接访问这些。然而,上面提到的经验的虚拟存在限于单个人。它不会为模拟启用其他功能,可以通过使用VR或AR接口重新规划或甚至在线连接中重新编程物理工厂。相关研究论文的主要目的是增强现有与物理世界DT-S完全同步,具有多用户体验,使工厂操作员能够以更直观的方式与远程位置一起使用并重新编程真实的机器关于最终目的而不是对过程本身。此外,使用实时平台UNITY3D开发,该多人游戏解决方案为培训和教育目的提供了机会,并将人们从世界的远程位置联系起来。用例利用工业机器人,该工业机器人在塔林理工大学工业虚拟和增强现实实验室环境中,并通过基于南丹麦大学和丹麦公司之间的合作开发的移动机器人解决方案。正在对爱沙尼亚和丹麦之间的连接进行实验,同时执行物理重型工业机器人的重新编程任务。此外,移动机器人解决方案在虚拟仓库环境中进行了演示。开发的方法和环境以及收集的数据将使我们能够扩展使用非制造场景的使用情况,即智能城市和智能医疗域,以创建一组新的接口和多人体验。

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