
CONCEPT FOR PHYSIOLOGICAL FUNCTION MONITORING WITH WEARABLE SENSORS
Author(s) -
Róbert Rákay,
Alena Galajdová
Publication year - 2020
Publication title -
tehnìčnì nauki ta tehnologìï
Language(s) - English
Resource type - Journals
eISSN - 2519-4569
pISSN - 2411-5363
DOI - 10.25140/2411-5363-2020-4(22)-190-197
Subject(s) - wearable computer , computer science , function (biology) , wearable technology , wireless , microcontroller , identification (biology) , human–computer interaction , risk analysis (engineering) , embedded system , data science , telecommunications , medicine , botany , evolutionary biology , biology
Urgency of the research. Modern trends in the automation focus on the implementation of new technologies in people's daily lives, regardless of whether they are healthy or not. The overall health status monitoring became easier nowadays by developing intelligent wearable devices.Target setting. Wearable devices must be non-invasive, comfortable,very light, and with unobtrusive design. The latest technological solutions in microcontroller, communication and sensing technologies provide significant advantages in terms of wireless monitoring of various parameters.Actual scientific researches and issues analysis. When preparing this article, various publicly available journals, datasheets and experimental solutions were analyzed. Conclusions of other experiments were used to create the knowledge base on this research topic as well.Uninvestigated parts of general matters defining. There are many technologies for sensing various physiological param-eters and for communication that work online and offline from various vendors. This paper is not enough to describe and analyze them.The re search objective. In this article, the design factors and concepts of wearable monitoring systems were analyzed. The results of the article form the basis for further development of an integrated complex wearable device with an identification system.The statement of basic materials.People should be monitored to predict future infections or prevent the spread of the disease. The use of compact solutions in health monitoring, such as sensors, microcontrollers with integrated communication technologies,provide a good basis for solving such problems as necessary monitoring of physiological condition.Conclusions. The proposed paper deals with the properties that need to be assumed when designing a carrier device. The proposed system can provide useful information about the user's health, and the aim of the design was to find the cheapest solution for university environment.