THERMAL SCIENCE
International Scientific Journal
THERMAL ENERGY DATA MONITORING SYSTEM BASED ON DATA COLLECTION OF THERMAL METERING EQUIPMENT OF INTERNET OF THINGS
ABSTRACT
To solve the inaccurate measurement of the traditional thermal energy network, the paper designs a thermal energy network monitoring and control system based on GPS and Ti3367 wireless transmission and reception based on the IoT. First, the paper designs the monitoring and control system's overall function and topology, including the management layer's complex functions, the data aggregation layer, and the data acquisition layer. The paper then designs the system's hardware structure based on the IoT, including the connection design of the hardware circuit structure diagram of the data aggregation layer and the data acquisition layer. Finally, the paper realizes the system's software flow design, including system initialization and wireless data receiving and sending flow design.
KEYWORDS
PAPER SUBMITTED: 2020-11-30
PAPER REVISED: 2021-01-15
PAPER ACCEPTED: 2021-01-27
PUBLISHED ONLINE: 2021-07-31
THERMAL SCIENCE YEAR
2021, VOLUME
25, ISSUE
Issue 4, PAGES [3073 - 3081]
- Arshad, A., et al., The Micro‐Nano‐PCM for Thermal Energy Storage Systems: A State of Srt Review, International Journal of Energy Research, 43 (2019), 11, pp. 5572-5620
- Verda, V., et al., Optimal Operation of Histrict heating Networks through Demand Response, International Journal of thermodynamics, 22 (2019), 1, pp. 35-43
- Lyu, J., et al., Aerogel-Directed Energy-Storage Films with Thermally Stimulant Multiresponsiveness, Langmuir, 35 (2019), 4, pp. 943-949
- Wu, S., Construction of Visual 3-D Fabric Reinforced Composite Thermal Perfomance Prediction System, Thermal Science, 23 (2019), 5, pp. 2857-2865
- Sun, J., et al., Highly Elastic and Ultrathin Nanopaper-Based Nanocomposites with Superior Electric and Thermal Characteristics, Journal of Materials Science, 54 (2019), 11, pp. 8436-8449
- Jia, W., et al., Preparation and Performances of Palmitic Acid/Diatomite Form‐Stable Composite Phase Change Materials, International Journal of Energy Research, 44 (2020), 6, pp. 4298-4308
- Haghighi, A., et al., Optimization of the Thermal Performance of PCM Nanocomposites, Journal of Energy Management and Technology, 4 (2020), 2, pp. 14-19
- Guo, Y., et al., Synergistic Energy Nanoconfinement and Water Activation in Hydrogels for Efficient Solar Water Desalination, ACS Nano, 13 (2019), 7, pp. 7913-7919
- Zhang, J., et al., Multi-Objective Particle Swarm Optimization (MOPSO) for a Distributed Energy System Integrated with Energy Storage, Journal of Thermal Science, 28 (2019), 6, pp. 1221-1235
- Wu, S., Study and Evaluation of Clustering Algorithm for Solubility and Thermodynamic Data of Glycerol Derivatives, Thermal Science, 23 (2019), 5, pp. 2867-2875
- Sadeghzadeh, M., et al., Smart Modelling by Using Artificial Intelligent Techniques on Thermal Performance of Flat‐Plate Solar Collector Using Nanofluid, Energy Science & Engineering, 7 (2019), 5, pp. 1649-1658