Multi-Sensor Device for Traceable Monitoring of Indoor Environmental Quality

Author:

Fissore Virginia Isabella1,Arcamone Giuseppina1ORCID,Astolfi Arianna1ORCID,Barbaro Alberto2ORCID,Carullo Alessio2,Chiavassa Pietro3ORCID,Clerico Marina4ORCID,Fantucci Stefano1ORCID,Fiori Franco2,Gallione Davide4,Giusto Edoardo35ORCID,Lorenzati Alice1,Mastromatteo Nicole4,Montrucchio Bartolomeo3,Pellegrino Anna1ORCID,Piccablotto Gabriele6,Puglisi Giuseppina Emma7ORCID,Ramirez-Espinosa Gustavo38ORCID,Raviola Erica2ORCID,Servetti Antonio3ORCID,Shtrepi Louena1ORCID

Affiliation:

1. Department of Energy, Politecnico di Torino, 10129 Turin, Italy

2. Department of Electronics and Telecommunication, Politecnico di Torino, 10129 Turin, Italy

3. Department of Control and Computer Engineering, Politecnico di Torino, 10129 Turin, Italy

4. Department of Environment, Land and Infrastructure Engineering, Politecnico di Torino, 10129 Turin, Italy

5. Department of Electrical and Information Technology Engineering, Università di Napoli Federico II, 80138 Naples, Italy

6. LAMSA—Department of Architecture and Design, Politecnico di Torino, 10129 Turin, Italy

7. Logistics and Sustainability Department, Campus Management, Politecnico di Torino, 10129 Turin, Italy

8. Department of Electronics, Pontificia Universidad Javeriana, Bogotá 110231, Colombia

Abstract

The Indoor Environmental Quality (IEQ) combines thermal, visual, acoustic, and air-quality conditions in indoor environments and affects occupants’ health, well-being, and comfort. Performing continuous monitoring to assess IEQ is increasingly proving to be important, also due to the large amount of time that people spend in closed spaces. In the present study, the design, development, and metrological characterization of a low-cost multi-sensor device is presented. The device is part of a wider system, hereafter referred to as PROMET&O (PROactive Monitoring for indoor EnvironmenTal quality & cOmfort), that also includes a questionnaire for the collection of occupants’ feedback on comfort perception and a dashboard to show end users all monitored data. The PROMET&O multi-sensor monitors the quality conditions of indoor environments thanks to a set of low-cost sensors that measure air temperature, relative humidity, illuminance, sound pressure level, carbon monoxide, carbon dioxide, nitrogen dioxide, particulate matter, volatile organic compounds, and formaldehyde. The device architecture is described, and the design criteria related to measurement requirements are highlighted. Particular attention is paid to the calibration of the device to ensure the metrological traceability of the measurements. Calibration procedures, based on the comparison to reference standards and following commonly employed or ad hoc developed technical procedures, were defined and applied to the bare sensors of air temperature and relative humidity, carbon dioxide, illuminance, sound pressure level, particulate matter, and formaldehyde. The next calibration phase in the laboratory will be aimed at analyzing the mutual influences of the assembled multi-sensor hardware components and refining the calibration functions.

Funder

national action program in the framework of the REACT EU Initiative

Politecnico di Torino, CALOS Department

companies Italgas Reti S.p.A. and C2R Energy Consulting S.r.l

Publisher

MDPI AG

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