Development of Smart Healthcare Monitoring System in IoT Environment

被引:35
作者
Islam M.M. [1 ]
Rahaman A. [1 ]
Islam M.R. [1 ]
机构
[1] Department of Computer Science and Engineering, Khulna University of Engineering & Technology, Khulna
关键词
ESP32; Healthcare monitoring system; Internet of things; Sensors;
D O I
10.1007/s42979-020-00195-y
中图分类号
学科分类号
摘要
Healthcare monitoring system in hospitals and many other health centers has experienced significant growth, and portable healthcare monitoring systems with emerging technologies are becoming of great concern to many countries worldwide nowadays. The advent of Internet of Things (IoT) technologies facilitates the progress of healthcare from face-to-face consulting to telemedicine. This paper proposes a smart healthcare system in IoT environment that can monitor a patient’s basic health signs as well as the room condition where the patients are now in real-time. In this system, five sensors are used to capture the data from hospital environment named heart beat sensor, body temperature sensor, room temperature sensor, CO sensor, and CO2 sensor. The error percentage of the developed scheme is within a certain limit (< 5%) for each case. The condition of the patients is conveyed via a portal to medical staff, where they can process and analyze the current situation of the patients. The developed prototype is well suited for healthcare monitoring that is proved by the effectiveness of the system. © 2020, Springer Nature Singapore Pte Ltd.
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共 33 条
[1]  
Rahaman A., Islam M., Islam M., Sadi M., Nooruddin S., Developing IoT based smart health monitoring systems: a review, Rev Intell Artif, 33, pp. 435-440, (2019)
[2]  
Riazul Islam S.M., Kwak D., Humaun Kabir M., Hossain M., Kwak K.-S., The Internet of Things for health care: a comprehensive survey, IEEE Access, 3, pp. 678-708, (2015)
[3]  
Lin T., Rivano H., Le Mouel F., A survey of smart parking solutions, IEEE Trans Intell Transp Syst, 18, pp. 3229-3253, (2017)
[4]  
Al-Ali A.R., Zualkernan I.A., Rashid M., Gupta R., Alikarar M., A smart home energy management system using IoT and big data analytics approach, IEEE Trans Consum Electron, (2017)
[5]  
Zanella A., Bui N., Castellani A., Vangelista L., Zorzi M., Internet of Things for smart cities, IEEE Internet Things J, 1, pp. 22-32, (2014)
[6]  
Mois G., Folea S., Sanislav T., Analysis of three IoT-based wireless sensors for environmental monitoring, IEEE Trans Instrum Meas, 66, pp. 2056-2064, (2017)
[7]  
Chen B., Wan J., Shu L., Li P., Mukherjee M., Yin B., Smart factory of Industry 4.0: key technologies, application case, and challenges, IEEE Access, 6, pp. 6505-6519, (2018)
[8]  
Ayaz M., Ammad-Uddin M., Sharif Z., Mansour A., Aggoune E.-H.M., Internet-of-Things (IoT)-based smart agriculture: toward making the fields talk, IEEE Access, 7, pp. 129551-129583, (2019)
[9]  
Hasan M., Islam M.M., Zarif M.I.I., Hashem M.M.A., Attack and anomaly detection in IoT sensors in IoT sites using machine learning approaches, Internet Things, 7, (2019)
[10]  
Nooruddin S., Milon Islam M., Sharna F.A., An IoT based device-type invariant fall detection system, Internet Things, 9, (2020)