4.8 Article

Value-Driven Robotic Digital Twins in Cyber-Physical Applications

期刊

IEEE TRANSACTIONS ON INDUSTRIAL INFORMATICS
卷 17, 期 5, 页码 3609-3619

出版社

IEEE-INST ELECTRICAL ELECTRONICS ENGINEERS INC
DOI: 10.1109/TII.2020.3011062

关键词

Service robots; Robot sensing systems; Dynamics; Stakeholders; Robot kinematics; Task analysis; Cyber– physical systems; digital twins (DTs); robotics

资金

  1. German Aerospace Center
  2. German Federal Ministry of Economics and Technology (BMWi) [50 RA 1203, ZBG 09488/08]
  3. Horizon2020 Research and Innovation Programme [680431]

向作者/读者索取更多资源

Despite the increasing complexity of robot manipulator skills, the cost-effective access to intelligent robots provides companies with the potential to gain a competitive edge. The value-driven RDT systematically captures robot dynamics and provides insight and capabilities to stakeholders.
Although the skills of robot manipulators are becoming technically more complex, the unprecedented cost-effective access to recently unveiled intelligent robots has the potential to unleash as yet unimagined automation capabilities. A key technology behind this opportunity for companies to gain a competitive edge through an informed and intelligent robotized automation is the robotic digital twin (RDT). As such, the RDT will be instrumental in mirroring targeted properties of a physical robot to obtain a digital sibling flexibly harnessed in virtual testbeds to understand, predict, and shape the robot performance. However, these objectives remain challenging to well-established simulators. This is because the architectural and functional capabilities they support are not sufficiently in-line with ever-growing and varying demands for agile and cost-efficient manipulations. As a consequence, robot stakeholders can hardly use RDTs to unlock opportunities and meet needs from prospective markets. This article contributes to addressing this gap. We introduce a novel concept for the development of a RDT that helps create and add value to current and future robotized cyber-physical applications. Hereinafter, referred to as the value-driven RDT (vdRDT), it systematically captures the robot dynamics and purposefully farms data, about which its services reason, to facilitate insight and deliver capabilities as well as benefits to stakeholders. Experiment results show that vdRDTs enlarge the scope of, adapt to, and revitalize robotized applications carried out in different fields.

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