This paper presents the research activity finalized to the development of a complete wearable sensors network for health monitoring in workplaces with particular reference to confined workspaces. The proposed network will incorporate gas sensors, vibration sensors, and sensors to provide real-time monitoring and analysis of various physiological parameters related to the well-being and safety of individuals in work environments. Furthermore, with slight modifications, the proposed solution can be adapted to environmental monitoring, soft robots, and athletes monitoring, expanding its potential applications and impact. Moreover, sensor network data can be collected and analysed to enable predictions of possibly unusual/hazardous environmental and personal conditions to alert for rapid intervention. In this paper, the first prototype of a complete wearable sensor network for the monitoring of environmental conditions, worker heart rate and mechanical vibrations, is described.
Parri, L., Landi, E., Tani, M., Moretti, R., Baldo, D., Fort, A., et al. (2024). A wearable wireless multiprotocol health monitoring system for workers operating in hazardous enviroments. In 2024 IEEE International Symposium on Systems Engineering (ISSE) (pp.1-6). New York : IEEE [10.1109/ISSE63315.2024.10741095].
A wearable wireless multiprotocol health monitoring system for workers operating in hazardous enviroments
Landi, E.
;Baldo, D.;Fort, A.;Vignoli, V.
2024-01-01
Abstract
This paper presents the research activity finalized to the development of a complete wearable sensors network for health monitoring in workplaces with particular reference to confined workspaces. The proposed network will incorporate gas sensors, vibration sensors, and sensors to provide real-time monitoring and analysis of various physiological parameters related to the well-being and safety of individuals in work environments. Furthermore, with slight modifications, the proposed solution can be adapted to environmental monitoring, soft robots, and athletes monitoring, expanding its potential applications and impact. Moreover, sensor network data can be collected and analysed to enable predictions of possibly unusual/hazardous environmental and personal conditions to alert for rapid intervention. In this paper, the first prototype of a complete wearable sensor network for the monitoring of environmental conditions, worker heart rate and mechanical vibrations, is described.| File | Dimensione | Formato | |
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https://hdl.handle.net/11365/1325735
