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Design of Pulse Rate and Body Temperature Monitoring System with Arduino Via Wifi and Android-Based Gadget

Desy Dwi Purnomo and Basar
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Desy Dwi Purnomo: Department of Electrical Engineering, University of Indonesia, Depok, Indonesia
Basar: Department of Electrical Engineering, University of Indonesia, Depok, Indonesia

International Journal of Technology and Engineering Studies, 2016, vol. 2, issue 5, 140-148

Abstract: Health is an important part of human life which is well known in the medical world as vital signs ie. blood pressure, body temperature, respiration rate, pulse rate/heart rate. The Improvement technology in sensor, microcontrollers, data processing software, telecommunications (wireless communication, internet and smartphones), has been utilized to improve the quality of human life. A health monitoring system has been created to monitor the status of human health so that patients and health practitioners should not meet in person, but can communicate using the Internet. Wireless communication technology that has been used ie. ZigBee, XBee, Bluetooth, WLAN for transfering data from the sensor system to a receiver system either through local PC or smartphone, and the system database server connected to the Internet so that can be accessed from anywhere as long as internet is available. In this paper, the author proposed the design of portable pulse rate and human body temperature monitoring system which measures data that can be accessed via web online and android smartphone.. This monitoring system consists of a sender system that combines a pulse sensor (Finger Sensor), temperature sensors, Arduino microcontroller, Mini LCD, SD Memory Card, Wi-Fi (2.4 GHz) and a receiver system that consists of a database server using Hosting server and android smartphone with Java applications. Validation of This System was done by comparing to OMRON, ECG, Thermometer and also using different SSID when accessing Wi-Fi network. Error of this tool compared with OMRON was 2.3%, 1.39% compared with ECG, 2% compared with Digital Thermometer and also has delay time more than 1 second so that should be improved in the future in order to be a realtime system.

Keywords: Android; Arduino; Heartbeat; Pulse Rate; Temperature; Wi-Fi (search for similar items in EconPapers)
Date: 2016
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Persistent link: https://EconPapers.repec.org/RePEc:apa:ijtess:2016:p:140-148

DOI: 10.20469/ijtes.2.40003-5

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