With the advent of sixth-generation communication technology in the future, the industrial Internet will usher in major changes. The ascent of Industry 4.0 brings a vast horizon of possibilities for the application of digital twinning technology. This paper introduced a comprehensive digital twinning framework covering the entire life cycle of industrial production for the sixth-generation communication technology through the integration of Internet of things (IoT), mobile communication, distributed storage, virtual reality technology, zero trust technology, reinforcement learning, and cryptography. Our platform aims at delivering a dynamic, cross-domain industrial digital twinning platform. The platform offers collaborative storage through-out the whole industrial production lifecycle to ensure the safety, integrity, and effectiveness of industrial digital twin data. Additionally, to cater to the access demands of numerous devices or separate factories, we proposed a timing-based encryption authentication scheme inside the zero-trust environment. We proposed a three-party hybrid dynamic spectrum allocation mechanism to solve the challenge of cross-domain spectrum resource contention.

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Distributed Industrial Digital Twinning Scheme in 6G Future Scenarios

  • Yibo Sun,
  • Bingyu Yang,
  • Enliang Wang,
  • Jing Gong,
  • Weitong Chen,
  • Zhe Sun

摘要

With the advent of sixth-generation communication technology in the future, the industrial Internet will usher in major changes. The ascent of Industry 4.0 brings a vast horizon of possibilities for the application of digital twinning technology. This paper introduced a comprehensive digital twinning framework covering the entire life cycle of industrial production for the sixth-generation communication technology through the integration of Internet of things (IoT), mobile communication, distributed storage, virtual reality technology, zero trust technology, reinforcement learning, and cryptography. Our platform aims at delivering a dynamic, cross-domain industrial digital twinning platform. The platform offers collaborative storage through-out the whole industrial production lifecycle to ensure the safety, integrity, and effectiveness of industrial digital twin data. Additionally, to cater to the access demands of numerous devices or separate factories, we proposed a timing-based encryption authentication scheme inside the zero-trust environment. We proposed a three-party hybrid dynamic spectrum allocation mechanism to solve the challenge of cross-domain spectrum resource contention.