TY - GEN
T1 - Development and In-field Application of a System for Indoor Environmental Quality Monitoring and Occupants’ Feedback Collection
AU - Fissore, Virginia Isabella
AU - Barbaro, Alberto
AU - Chiavassa, Pietro
AU - Espinosa, Gustavo Adolfo Ramirez
AU - Giusto, Edoardo
AU - Puglisi, Giuseppina Emma
AU - Raviola, Erica
AU - Shtrepi, Louena
AU - Servetti, Antonio
AU - Montrucchio, Bartolomeo
AU - Fiori, Franco
AU - Astolfi, Arianna
N1 - Publisher Copyright:
© The Author(s), under exclusive license to Springer Nature Singapore Pte Ltd. 2025.
PY - 2025
Y1 - 2025
N2 - Indoor Environmental Quality (IEQ) affects occupants’ health, well-being and comfort, making its assessment increasingly required. This work presents a system designed to collect subjective and objective data on IEQ, referred to as PROMET&O (PROactive Monitoring for indoor EnvironmenTal quality & cOmfort). It is built on a survey and a low-cost and accurate multi-sensor device. The former was developed to collect feedback on occupants’ comfort perception and personal and behavioural information. The latter was developed to monitor the thermal, lighting, acoustic and air quality conditions in indoor environments. The monitored parameters (air temperature, relative humidity, carbon dioxide, carbon monoxide, nitrogen dioxide, particulate matter, volatile organic compounds, formaldehyde, illuminance and sound pressure level) were selected based on international standards. A three-step calibration of the device is applied to ensure the measurements’ reliability. The monitored data is transferred and processed on an open-source platform and the thermal comfort, visual comfort, acoustic comfort, indoor air quality and IEQ indexes are calculated and displayed on a user-friendly interface. This interface was designed to inform both building managers and occupants on IEQ trends and to provide them with more information on monitored parameters and hints on actions to improve their comfort. Preliminary tests in laboratory and in-field have shown the validity and scalability of the system’s design.
AB - Indoor Environmental Quality (IEQ) affects occupants’ health, well-being and comfort, making its assessment increasingly required. This work presents a system designed to collect subjective and objective data on IEQ, referred to as PROMET&O (PROactive Monitoring for indoor EnvironmenTal quality & cOmfort). It is built on a survey and a low-cost and accurate multi-sensor device. The former was developed to collect feedback on occupants’ comfort perception and personal and behavioural information. The latter was developed to monitor the thermal, lighting, acoustic and air quality conditions in indoor environments. The monitored parameters (air temperature, relative humidity, carbon dioxide, carbon monoxide, nitrogen dioxide, particulate matter, volatile organic compounds, formaldehyde, illuminance and sound pressure level) were selected based on international standards. A three-step calibration of the device is applied to ensure the measurements’ reliability. The monitored data is transferred and processed on an open-source platform and the thermal comfort, visual comfort, acoustic comfort, indoor air quality and IEQ indexes are calculated and displayed on a user-friendly interface. This interface was designed to inform both building managers and occupants on IEQ trends and to provide them with more information on monitored parameters and hints on actions to improve their comfort. Preliminary tests in laboratory and in-field have shown the validity and scalability of the system’s design.
KW - Indoor Environmental Quality
KW - Multi-sensor Device
KW - Overall Comfort
UR - http://www.scopus.com/inward/record.url?scp=85214109031&partnerID=8YFLogxK
U2 - 10.1007/978-981-97-8317-5_18
DO - 10.1007/978-981-97-8317-5_18
M3 - Conference contribution
AN - SCOPUS:85214109031
SN - 9789819783168
T3 - Lecture Notes in Civil Engineering
SP - 114
EP - 119
BT - Multiphysics and Multiscale Building Physics - Proceedings of the 9th International Building Physics Conference IBPC 2024
A2 - Berardi, Umberto
PB - Springer Science and Business Media Deutschland GmbH
T2 - 9th International Building Physics Conference, IBPC 2024
Y2 - 25 July 2024 through 27 July 2024
ER -