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  • ASME 2021 International Mechanical Engineering Congress and Exposition (IMECE2021) Topic/Session Gallery
  • 02-13-01: Digital Twin Aspects
  • Digital Twin: Universal User Interface for Real-Time Management of the Manufacturing System

Session: 02-13-01: Digital Twin Aspects

Paper Number: 69092

Start Time: Tuesday, 10:05 AM

69092 - Digital Twin: Universal User Interface for Real-Time Management of the Manufacturing System 

Industry 4.0 concept enables connecting a multitude of equipment to computer simulations through IoT and virtual commissioning, but using conventional interfaces for each separate piece of equipment for control and maintenance of digital twins is not always an optimal solution. Industrial Digital Twins software toolkits usually consist of simulation or offline programming tools. It can even connect real machines and controllers, and sensors to feed a simulation with real production data and later analyze it. Moreover, Virtual Reality (VR) and Augmented Reality (AR) are used in different ways for monitoring and design purposes. However, there is a large number of software tools for the simulation and re-programming of robots on the market already, but those are a limited number of software that combine all these features, and all of those send data only in one way, not allowing to re-program machines from the simulations. The related research aims to build a modular framework for designing and deploying digital twins of industrial equipment (i.e., robots, manufacturing lines), focusing on real-time connectivity for monitoring and control. Developed use-case solution enables one to operate the equipment in VR/AR/Personal Computer (PC) and mobile interfaces from any point globally while receiving real-time feedback and state information of the machinery equipment. gamified multi-platform interfaces allow for more intuitive interactions with digital twins, providing a real-scale model of the real device, augmented by spatial UIs, actuated physical elements, and gesture tracking.

The introduced solution can control and simulate any aspect of the production line without limitation of brand or type of the machine and being managed and self-learning independently by exploiting Machine Learning algorithms. Moreover, various interfaces such as PC, mobile, VR, and AR give an unlimited number of options for interactions with your manufacturing shop-floor both offline and online. Furthermore, when it comes to manufacturing floor data monitoring, all gathered data is being used for statistical analysis, and in a later phase, predictive maintenance functions are enabled based on it.

However, the research scope is broader; this particular research paper introduces a use-case interface on a mobile platform, which can monitor and control the production unit of three various brand industrial- and three mobile robots, partially supported by data monitoring sensors. The solution is being developed using the game engine Unity3D, Robot Operation System (ROS), and MQTT for connectivity. Thus, developed is a universal modular digital twin all-in-one software platform for users and operators, enabling full control over the manufacturing system unit.

Presenting Author: Vladimir Kuts Tallinn University of Technology

Authors:

Vladimir Kuts Tallinn University of Technology
Yevhen Bondarenko Tallinn University of Technology
Marietta Gavriljuk Tallinn University of Technology
Andriy Partyshev Tallinn University of Technology
Sergei Jegorov Tallinn University of Technology
Simone Pizzagalli Tallinn University of Technology
Tauno Otto Tallinn University of Technology

Digital Twin: Universal User Interface for Real-Time Management of the Manufacturing System

Paper Type

Invited Presentation

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