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Proposal of IoT devices control using mixed reality and QR codes

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Języki publikacji
EN
Abstrakty
EN
The Internet of Things (IoT) and mixed reality are now among the most important areas in research or in practice. The aim of this paper is to propose an appropri‐ ate way of connection of these two areas, where is pos‐ sible to control and monitor mechatronic devices using a mobile device with augmented/mixed reality support. The main task will be to explore these options in the area and implement this solution as prototype. The proposed methodology for control and diagnostics of mechatronic devices is modern as it combines hardware management, Unity engine for mixed reality development, and commu‐ nication within the IoT network.
Twórcy
autor
  • Рan‑European Univer‑ sity, Tematinska 10, Bratislava, Slovakia, www.paneurouni.com/en/kat‑kontakty/peu/
autor
  • Faculty of Electrical Engineering and Information Technology, Slovak University of Technology in Bratislava, Ilkovicova 3, Bratislava, Slovakia, www: www.uamt.fei.stuba.sk
autor
  • Faculty of Electrical Engineering and Information Technology, Slovak University of Technology in Bratislava, Ilkovicova 3, Bratislava, Slovakia, www: www.uamt.fei.stuba.sk
Bibliografia
  • [1] “VR/AR/MR, what’s the difference? | Virtual reality | Foundry”. www.foundry.com/insights/vr‑ar‑mr/vr‑mr‑ar‑confused. Accessed on: 2020.12.15.
  • [2] “Control with your smart devices by staring and gesturing”, 2016. blog.arduino.cc/2016/07/26/control‑with‑your‑smart‑devices‑by‑staring‑and‑gesturing/.Accessed on: 2020.12.15.
  • [3] R. Falkenberg, M. Masoudinejad, M. Buschhoff, A. K. R. Venkatapathy, D. Friesel, M. t. Hompel, O. Spinczyk, and C. Wietfeld, “PhyNetLab: An IoT‑Based Warehouse Testbed”. In: Annals of Computer Science and Information Systems, vol. 11,2017, 1051–1055, ISSN: 2300‑5963.
  • [4] S. Hammar. “Connected cars: Driving the Internet of Things revolution”, 2017. www.iot‑now.com/2017/04/03/60270‑connected‑cars‑driving‑internet‑things‑revolution/. Accessed on: 2020.12.15.
  • [5] P. Lewicki. “Controlling lights with the Hololens and Internet of Things”, 2016.www.afternow.io/controlling‑lights‑with‑the‑hololens‑and‑internet‑of‑things. Accessed on: 2020.12.15.
  • [6] M. P. Loria, M. Toja, V. Carchiolo, and M. Malgeri, “An efficient real‑time architecture for collecting IoT data”. In: 2017 Federated Conference on Computer Science and Information Systems (FedCSIS),2017, 1157–1166, 10.15439/2017F381.
  • [7] M. Malý. “BigClown: IoT jako modulá rnı́ stavebnice”, 2016. www.root.cz/clanky/bigclown‑iot‑jako‑modularni‑stavebnice. Accessed on:2020.12.15.
  • [8] J. Mocnej, T. Lojka, and I. Zolotová , “Using information entropy in smart sensors for decentralized data acquisition architecture”. In: 2016 IEEE 14th International Symposium on Applied Machine Intelligence and Informatics (SAMI), 2016, 47–50, 10.1109/SAMI.2016.7422980.
  • [9] P. Pohanka. “Internet of Things”.https://pavelpohanka.cz/en/internet‑of‑things‑2/. Accessed on: 2020.12.15.
  • [10] J. Rambach, A. Pagani, and D. Stricker, “Augmented Things: Enhancing AR Applications leveraging the Internet of Things and Universal 3D Object Tracking”. In: 2017 IEEE International Symposium on Mixed and Augmented Reality (ISMAR‑Adjunct), 2017, 103–108,10.1109/ISMAR‑Adjunct.2017.42.
  • [11] R. van der Meulen. “Gartner Says 8.4 Billion Connected ”Things” Will Be in Use in 2017, Up 31 Percent From 2016”, 2017.www.gartner.com/en/newsroom/press‑releases/2017‑02‑07‑gartner‑says‑8‑billion‑connected‑things‑will‑be‑in‑use‑in‑2017‑up‑31‑percent‑from‑2016. Accessed on:2020.12.15.
Typ dokumentu
Bibliografia
Identyfikator YADDA
bwmeta1.element.baztech-70d11311-06a3-45fc-82ff-c788a2e39285
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