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LPWAN based IoT Architecture for Distributed Energy Monitoring in Deep Indoor Environments

Fast facts

  • Internal authorship

  • Further publishers

    Benz Cramer

  • Publishment

    • 2025
    • Volume Proceedings of the 6th International Conference on Building Energy and Environment (COBEE 2025)
  • Title of the conference proceedings

    Proceedings of the 6th International Conference on Building Energy and Environment (COBEE 2025)

  • Organizational unit

  • Subjects

    • Ingenieurinformatik/Technische Informatik
  • Research fields

    • Institute for the Digital Transformation of Application and Living Domains (IDiAL)
  • Publication format

    Conference paper

Quote

C. Röhrig and B. Cramer, "LPWAN based IoT Architecture for Distributed Energy Monitoring in Deep Indoor Environments," in Proceedings of the 6th International Conference on Building Energy and Environment (COBEE 2025), 2025, pp. 1404-1411 [Online]. Available: https://www.imsl.fh-dortmund.de/publications/RoehrigCOBEE25.pdf

Content

Continuous energy monitoring is essential for identifying potential savings and predicting the energy requirements of buildings. Energy meters are often located in underground spaces that are difficult to reach with wireless technology. This paper presents an experimental study comparing different Low Power Wide Area Networks (LPWAN) technologies in terms of building penetration and radio coverage. The technologies Low Power Long Range Wide Area Networks (LoRaWAN), Narrow Band Internet of Things (NB-IoT), Sigfox 0G and Wireless Smart Ubiquitous Networks (Wi-SUN) are evaluated experimentally. It also proposes a distributed hybrid IoT architecture that combines multiple LPWAN technologies using an abstraction layer to optimize cost and coverage. Communication is message-based using the publish-subscribe messaging pattern. It is implemented using the MQTT protocol. The abstraction layer decodes the proprietary binary data and converts it to a normalized JSON format.

Notes and references

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