Real-Time IoT Solution to Monitor and Control dMVHR Units in Real-Life Environment
Tolvaly-Roşca, Ferenc
Fekete, Gusztáv
Bíró, István
Fekete, Albert-Zsombor
Forgó, Zoltán
2025-09-04T13:53:12Z
2025-09-04T13:53:12Z
2024
1785-8860
hu_HU
http://hdl.handle.net/20.500.14044/33215
This paper presents an up-and-running control system, using IoT hardware, for
multiple decentralized mechanical ventilation with heat recovery (dMVHR) units to
enhance the overall performance of heat exchangers and the air quality of a real-life
environment. The implemented control and monitoring system is able to measure the
thermal efficiency of the complete ventilation system under real working conditions.
Fan speed is automated based on the measured CO2eq levels in the bedrooms of the
building, however, manual control is also possible. Temperature, relative humidity and
CO2eq levels can be monitored live on the user’s smart device, while data can be exported
through Google cloud system. Data values can be stored and accessed any time by legit
users. The thermal efficiency of the individual units and the whole ventilation system was
investigated and experimentally verified under real-life conditions, using the implemented
centralized control and monitoring system.
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Real-Time IoT Solution to Monitor and Control dMVHR Units in Real-Life Environment
hu_HU
Open access
hu_HU
Óbudai Egyetem
hu_HU
Budapest
hu_HU
Óbudai Egyetem
hu_HU
Műszaki tudományok - multidiszciplináris műszaki tudományok
hu_HU
decentralized mechanical ventilation with heat exchanger