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Healthcare Monitoring Of Chronic Diseases
Subject area: Science,Engineering and Technology · Area of research: ECE
Abstract
The proposed system is an intensified version of monitoring the health condition of a person and making the information visible anywhere in the world. The technology used is the Internet of Things (IoT), is an advanced as well as the efficient solution for connecting the things to the internet and entire world of things in a network, which is possible by using Espressif (ESP8266 12E) along with ARDUINO UNO and its platform ARDUINO Integrated Development Environment(IDE). It is further interfaced with a blood pressure module, pulse rate and temperature sensor to obtain the data. Using web server programming the data is loaded into the Thing Speak platform. The ThingSpeak.com stores data in the form of charts of different styles like bar chart or even a line graph. This system is developed to produce a prototype of a web based patient monitoring system that allows the user to continuously monitor the patient's condition. The enhancement of this system from the existing method on monitoring the patients? health will allow the data to be monitored anytime and anywhere from the Internet. It consists of both the hardware and software modules. The hardware part involves building the blood pressure module, interfacing of the temperature sensor and the pulse sensor to the Arduino and the software section involves programming codes based on the C language.
Keywords
Internet of Things (IOT), Sensors to Cloud System, Arduino UNO, Arduino IDE, ESP8266 12E.
References
[1] Ayush Bansal, Sunil Kumar, Anurag Bajpai (2015) ‘Remote Health Monitoring System for detecting Cardiac Disorders’, IJET SYST, Vol.9, Issue 6, pp.309-314.
[2] Anju C.K and Lekshmi S (2016) ‘Wireless Biomedical Parameter Monitoring System using ARM Microcontroller: A Review’, IOSR Journal of Engineering, Vol.4, Issue 5, pp.72-76.
[3] Amna Abdullah, Asma Ismael, Aisha Rashid, Ali Abou Elnour (2015) ‘Real Time Wireless Health Monitoring Application using Mobile devices’, International Journal of Computer Networks and Communications, Vol.7, Issue 3, pp.223- 235.
[4] Chandrasekhar, Chakravarthi, Srikanth (2013) ‘Wireless Health Monitoring System Using ZigBee’, International Journal of Innovative Research in Science, Engineering and Technology, Vol.2, Issue 11, pp.432- 435.
[5] Monicka S and Suganya C (2014) ‘A Ubiquitous Based System for Health Care Monitoring’, International Journal of Scientific Research Engineering & Technology, Vol.3, Issue 4, pp.223-243.
[6] Risodkar R and Prof. M. K. Sangole (2015), ‘Web Based Health Monitoring System’, International Journal of Advanced Research in Electronics and Communication Engineering, Vol.4, Issue 1, pp.21-27.
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[8] Poonam Agrawal, Prof. S. P. Hingway and Prof.B.P. Dharaskar (2013) ‘Innovative Approach for Wireless Health Monitoring system using Client-Server Architecture’, International Journal of Engineering Trends and Technology, Vol.4, Issue 5, pp.324-331.
[9] Media Aminian and Hamid Reza Naji (2013) ‘A Hospital Healthcare Monitoring System using Wireless Sensor Networks’, International Standard Serial Number, Vol.4, Issue 2, pp.156-162.
How to cite this paper
@article{1701153,
author = {Dr.D.Binu, Puja Murugan, Vasanthaalakshmi.M, Vinitha.P},
title = {Healthcare Monitoring Of Chronic Diseases},
journal = {Iconic Research And Engineering Journals},
year = {2019},
volume = {2},
number = {10},
pages = {237-243},
issn = {2456-8880},
url = {https://www.irejournals.com/formatedpaper/1701153.pdf},
abstract = {The proposed system is an intensified version of monitoring the health condition of a person and making the information visible anywhere in the world. The technology used is the Internet of Things (IoT), is an advanced as well as the efficient solution for connecting the things to the internet and entire world of things in a network, which is possible by using Espressif (ESP8266 12E) along with ARDUINO UNO and its platform ARDUINO Integrated Development Environment(IDE). It is further interfaced with a blood pressure module, pulse rate and temperature sensor to obtain the data. Using web server programming the data is loaded into the Thing Speak platform. The ThingSpeak.com stores data in the form of charts of different styles like bar chart or even a line graph. This system is developed to produce a prototype of a web based patient monitoring system that allows the user to continuously monitor the patient's condition. The enhancement of this system from the existing method on monitoring the patients? health will allow the data to be monitored anytime and anywhere from the Internet. It consists of both the hardware and software modules. The hardware part involves building the blood pressure module, interfacing of the temperature sensor and the pulse sensor to the Arduino and the software section involves programming codes based on the C language.},
keywords = {Internet of Things (IOT), Sensors to Cloud System, Arduino UNO, Arduino IDE, ESP8266 12E.},
month = {April},
}