Sistem Alat Ukur Detak Jantung Dan Nafas Manusia Menggunakan Arduino Uno

Andreas Nggaba Ngabi, Ali Warsito, Jonshon Tarigan

Abstract


This research was conducted by identifying one of the problems that exist in the world of health, namely monitoring human health conditions in real time and automatically. The purpose of this study is to realize an Arduino Uno-based instrumentation tool by utilizing a heart rate sensor and respiratory frequency in humans in overcoming these problems. The research method applied is to measure health conditions by determining two indicators of the measured object of research, namely heart rate and breathing frequency. As comparison data, measuring instruments are used in determining the accuracy of the instrumentation made. Based on the measurement results from nine samples of health condition data, the results for the heart rate were 3.33 BPM with an accuracy of 96.67%, and the results for the respiratory frequency were 2.4 X/min with an instrument accuracy of 97.60%. With these results, it is concluded that the instrumentation made is accurate enough to be used as an additional means of monitoring health conditions in real time and automatically..

Keywords: Arduino Uno,  Heart rate, breathing frequency


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References


A. S. Rafika, Sudaryono, W. D. Andoyo. Prototype perancaangan sistem otomatis pembaca suhu ruangan menggunakan output kipas dan sensor LM35 berbasis mikrokontoroller Atmega16. 8 (2014), 102-111.

M. Ichwan, M. G. Husada, M. I. A. Rasyid. Pembangunan prototipe sistem pengendalian peralatan listrik pada platform android, Jurnal Informatika. I (2013), 13-25.

P. Mandarani, Zaini. Pengembangan sistem monitoring pada building automation sistem (BAS) berbasis WEB di Fakultas Tenik Universitas Andalas, Jurnal Teknik Elektro ITP. 4 (2015), 7-16.

A. F. Silvia, E. Haritman, Y. Muladi. Rancang bangun akses kontrol pintu gerbang berbasis arduino dan android, Elektrans. 13 (2014) 1-10.

H. Guntoro, Y. Somantri, E. Haritman. Rancang bangun magnetic door lock menggunakan keypad dan solenoid berbasis mikrokontroller arduino uno, Elektrans. 12 (2013), 39-48.

Darwinson, R. Wahyudi. Kontrol kecepatan robot hexapod pemadam api menggunakan metode logika Fuzzy, Jurnal Nasional Teknik Elektro. 4 (2014), 227-234.

Artanto, Dian. 2012. Interaksi Arduino dan LabVIEW. Jakarta: Elex Media Komputindo.

Septiani, Anita Dwi. 2015. Perancangan Alat Pemantau Kondisi Kesehatan Manusia. Universitas Negeri Semarang.

Download pulse sensor data sheet : https://cdn.shopify.com/s/files/1/0100/6632/files/Pulse_Sensor_Data_Sheet.pdf?14358792549038671331

Wohingati, Galuh Wahyu, Dkk. 2013. Alat Pengukur Detak Jantung Menggunakan Pulse Sensor Berbasis Arduino R3 yang diintegrasikan dengan Bluetooth. Jurnal Diploma III Teknik Elektro Universitas Diponegoro.

Download sound sensor data sheet : https://www.robotshop.com/media/files/pdf/sound-sensor-module-arduino-datasheet.pdf

Download Bluetooth HC-05 module data sheet : https://components101.com/sites/default/files/component_datasheet/HC-05%20Datasheet.pdf

Virtuino, 2019. Virtuino[online] (https://virtuino.com/)

Dowload Virtuino Library : http://iliaslamprou.mysch.gr/virtuino/virtuino.zip




DOI: https://doi.org/10.26877/lpt.v1i1.10309

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