Monitoring and Prediction of Indoor Air Quality for Enhanced Occupational Health

被引:3
|
作者
Pop , Adela [1 ]
Fanca, Alexandra [1 ]
Gota, Dan Ioan [1 ]
Valean, Honoriu [1 ]
机构
[1] Tech Univ Cluj Napoca, Cluj Napoca, Romania
关键词
Machine learning; indoor air quality; humidity; carbon dioxide; relative humidity; SYSTEM;
D O I
10.32604/iasc.2023.025069
中图分类号
TP [自动化技术、计算机技术];
学科分类号
0812 ;
摘要
The amount of moisture in the air is represented by relative humidity (RH); an ideal level of humidity in the interior environment is between 40% and 60% at temperatures between 18 degrees and 20 degrees Celsius. When the RH falls below this level, the environment becomes dry, which can cause skin dryness, irritation, and discomfort at low temperatures. When the humidity level rises above 60%, a wet atmosphere develops, which encourages the growth of mold and mites. Asthma and allergy symptoms may occur as a result. Human health is harmed by excessive humidity or a lack thereof. Dehumidifiers can be used to provide an optimal level of humidity and a stable and pleasant atmosphere; certain models disinfect and purify the water, reducing the spread of bacteria. The design and implementation of a client-server indoor and outdoor air quality monitoring application are presented in this paper. The Netatmo station was used to acquire the data needed in the application. The client is an Android application that allows the user to monitor air quality over a period of their choosing. For a good monitoring process, the Netatmo modules were used to collect data from both environments (indoor: temperature (T), RH, carbon dioxide (CO2), atmospheric pressure (Pa), noise and outdoor: T and RH). The data is stored in a database, using MySQL. The Android application allows the user to view the evolution of the measured parameters in the form of graphs. Also, the paper presents a prediction model of RH using Azure Machine Learning Studio (Azure ML Studio). The model is evaluated using metrics: Mean Absolute Error (MAE), Root Mean Squared Error (RMSE), Relative Absolute Error (RAE), Relative Squared Error (RSE) and Coefficient of Determination (CoD).
引用
收藏
页码:925 / 940
页数:16
相关论文
共 50 条
  • [41] Optimization of Indoor Air Quality Characteristics in an Air-Conditioned Car Using Multi-objective Genetic Algorithm
    Thirumal, P.
    Amirthagadeswaran, K. S.
    Jayabal, S.
    ARABIAN JOURNAL FOR SCIENCE AND ENGINEERING, 2014, 39 (11) : 8307 - 8317
  • [42] Indoor air quality in a dentistry clinic
    Helmis, C. G.
    Tzoutzas, J.
    Flocas, H. A.
    Halios, C. H.
    Stathopouiou, O. I.
    Assimakopoulos, V. D.
    Panis, V.
    Apostolatou, M.
    Sgouros, G.
    Adam, E.
    SCIENCE OF THE TOTAL ENVIRONMENT, 2007, 377 (2-3) : 349 - 365
  • [43] Perceived air quality and satisfaction during implementation of an automated indoor air quality monitoring and control system
    Son, Young Joo
    Pope, Zachary C.
    Pantelic, Jovan
    BUILDING AND ENVIRONMENT, 2023, 243
  • [44] Evidence-driven indoor air quality improvement: An innovative and interdisciplinary approach to improving indoor air quality
    Lovric, Mario
    Gajski, Goran
    Fernandez-Aguera, Jessica
    Pohlker, Mira
    Gursch, Heimo
    Borg, Alex
    Switters, Jon
    Mureddu, Francesco
    BIOFACTORS, 2025, 51 (01)
  • [45] Cooling Performance and Indoor Air Quality Characteristics of an Earth Air Tunnel Cooled Building
    Samuel, D. G. Leo
    Nagendra, S. M. Shiva
    Maiya, M. P.
    MAPAN-JOURNAL OF METROLOGY SOCIETY OF INDIA, 2018, 33 (02): : 147 - 158
  • [46] Ventilation, indoor air quality, and health in homes undergoing weatherization
    Francisco, P. W.
    Jacobs, D. E.
    Targos, L.
    Dixon, S. L.
    Breysse, J.
    Rose, W.
    Cali, S.
    INDOOR AIR, 2017, 27 (02) : 463 - 477
  • [47] Indoor Air Quality in Community Health Centers: a preliminary study
    Santos, Luis
    Rebelo, Andreia
    Santos, Joana
    da Silva, Manuela Vieira
    OCCUPATIONAL SAFETY AND HYGIENE - SHO2013, 2013, : 447 - 449
  • [48] Valuing the health benefits of improving indoor air quality in residences
    Chau, C. K.
    Hui, W. K.
    Tse, M. S.
    SCIENCE OF THE TOTAL ENVIRONMENT, 2008, 394 (01) : 25 - 38
  • [49] Evaluation of health benefits for improving indoor air quality in workplace
    Chau, C. K.
    Hui, W. K.
    Tse, M. S.
    ENVIRONMENT INTERNATIONAL, 2007, 33 (02) : 186 - 198
  • [50] Using Adaptive Transmit Power in Wireless Indoor Air Quality Monitoring
    Rusu, Andrei
    Dobra, Petra
    2019 23RD INTERNATIONAL CONFERENCE ON SYSTEM THEORY, CONTROL AND COMPUTING (ICSTCC), 2019, : 543 - 548