Smart Face-shield Berteknologi Internet of Things sebagai Alat Pelindung Diri di Era Pandemi Covid-19

Authors

  • Berlilana Berlilana Universitas Amikom Purwokerto, Jawa Tengah
  • Bagus Adhi Kusuma Universitas Amikom Purwokerto, Jawa Tengah
  • Fikri Ramadhan Universitas Amikom Purwokerto, Jawa Tengah

DOI:

https://doi.org/10.30865/mib.v5i4.3307

Keywords:

Smart Face-Shield, Covid-19, IoT, Ultrasonic, AMG8833

Abstract

Covid-19 or Corona is a pandemic virus that has spread in almost all parts of the world. The speed of transmission of this virus is a major problem. This virus can be spread quickly through coughing, sneezing, talking, which essentially can expel droplets because this virus mostly has a host in droplets. The face area can easily be infected with Covid-19, for example entering through the eyes, nose or mouth. In this era of a pandemic, there are so many OTG or people without symptoms that it becomes a problem in suppressing this disease. There are also people with fever symptoms which are one of the indications for corona disease but are not necessarily positive, they must go through initial screening such as rapid tests and PCR (Polymerase Chain Reaction) to more accurately identify someone exposed to Covid-19 or not. In the era of the new normal pandemic, it is very difficult to trace someone's contact with anyone, especially if there is one patient who is positive for Covid-19. Therefore, the purpose of this research is proposed, namely to create a tool that essentially functions as a tool for social distancing reminders that is integrated in an PPE, namely Face-Shield. This face-shield has an RGB camera, thermal camera and proximity sensor. The distance measurement method uses the ultrasonic wave ping principle which will detect a distance between humans of about 1 meter. The AMD 8833 thermal camera detects the ambient temperature and the RGB camera to display an image of the environment if needed via a computer connection. In order to facilitate data monitoring, Android smartphones are also integrated with this system to view temperature and distance data via an Internet connection. The results of the tests carried out using black-box testing of all component devices run properly

References

A. Susilo et al., “Skoring yang digunakan dalam penanganan COVID-19,†vol. 7, no. 1, hal. 68–77, 2020, doi: 10.1101/2020.03.05.20031906.b.Skor.

D. Radovanovic, M. Rizzi, S. Pini, M. Saad, D. A. Chiumello, dan P. Santus, “Helmet CPAP to Treat Acute Hypoxemic Respiratory Failure in Patients with COVID-19: A Management Strategy Proposal,†J. Clin. Med., vol. 9, no. 4, hal. 1191, 2020, doi: 10.3390/jcm9041191.

C. Budi Nugroho et al., “Desain dan Pembuatan Faceshield Sebagai Alat Perlindungan Diri Penyebaran Covid19,†J. Pengabdi. Masy., vol. 2, no. 1, hal. 1–16, 2020, [Daring]. Tersedia pada: www.worldometers.info.

M. R. Desjardins, A. Hohl, dan E. M. Delmelle, “Rapid surveillance of COVID-19 in the United States using a prospective space-time scan statistic: Detecting and evaluating emerging clusters,†Appl. Geogr., vol. 118, no. March, hal. 102202, 2020, doi: 10.1016/j.apgeog.2020.102202.

S. Costanzo dan A. Flores, “A Non-Contact Integrated Body-Ambient Temperature Sensors Platform to Contrast COVID-19,†Electronics, vol. 9, no. 10, hal. 1658, Okt 2020, doi: 10.3390/electronics9101658.

M. Safitri dan G. A. Dinata, “Non-Contact Thermometer Berbasis Infra Merah,†Simetris J. Tek. Mesin, Elektro dan Ilmu Komput., vol. 10, no. 1, hal. 21–26, 2019, doi: 10.24176/simet.v10i1.2647.

M. N. Mohammed, H. Syamsudin, S. Al-Zubaidi, A. K. Sairah, R. Ramli, dan E. Yusuf, “Novel covid-19 detection and diagnosis system using iot based smart helmet,†Int. J. Psychosoc. Rehabil., vol. 24, no. 7, hal. 2296–2303, 2020, doi: 10.37200/IJPR/V24I7/PR270221.

Khr/wis, “Klaster Ponpes Banyumas, 126 Santri Positif Covid-19,†CNN Indonesia, 2020. https://www.cnnindonesia.com/nasional/20200925154219-20-551020/klaster-ponpes-banyumas-126-santri-positif-covid-19 (diakses Sep 25, 2020).

H. Pratomo, “From social distancing to physical distancing: A challenge forevaluating public health intervention against covid-19,†Kesmas, vol. 15, no. 2, hal. 60–63, 2020, doi: 10.21109/KESMAS.V15I2.4010.

S. N. S. Al-Humairi et al., “Conceptual Design: A Novel Covid-19 Smart AI Helmet,†Int. J. Emerg. Technol., vol. 11, no. 5, hal. 389–396, 2020.

J. Foster, A. B. Lloyd, dan G. Havenith, “Non-contact infrared assessment of human body temperature: The journal Temperature toolbox,†Temperature, vol. 00, no. 00, hal. 1–14, 2021, doi: 10.1080/23328940.2021.1899546.

I. S. Jati dan M. Rivai, “Implementasi Thermal Camera pada Pengaturan Pendingin Ruangan,†J. Tek. ITS, vol. 8, no. 2, hal. A66, 2019.

M. A. Rahman, S. Z. Yi, N. S. M. Shah, dan M. A. Irfan, “Fever Monitoring and Alert System for Children using Thermographic Camera,†Int. J. Adv. Trends Comput. Sci. Eng., vol. 9, no. 1, hal. 182–185, 2020.

Supria dan M. Nasir, “MONITORING OF BODY TEMPERATURE NON CONTACT USING AMG8833 THERMAL CAMERA AND FACE DETECTION,†in Seminar Nasional Terapan Riset Inovatif (SENTRINOV) Ke-6, 2020, vol. 6, no. 1, hal. 396–403.

A. S. Rahajeng, Muhardi, R. Wahyuni, dan Y. Irawan, “Pemanfaatan Modul GSM dan Modul GPS pada Sistem Keamanan Sepeda Motor Menggunakan Smartphone Berbasis Arduino Uno,†J. Teknol. DAN OPEN SOURCE, vol. 3, no. 1, hal. 90–100, 2020.

A. Wibowo dan A. Azimah, “Rancang Bangun Sistem Informasi Penjaminan Mutu Perguruan Tinggi Menggunakan Metode Throwaway Prototyping Development,†Semin. Nas. Teknol. Inf. dan Multimed., hal. 103–108, 2016.

C. Kartiko, “Black Box Testing Boundary Value Analysis Pada Aplikasi Submission System,†Edik Inform., vol. 6, no. 2, hal. 15–22, 2020, doi: 10.22202/ei.2020.v6i2.3995.

B. A. Priyaungga, D. B. Aji, M. Syahroni, N. T. S. Aji, dan A. Saifudin, “Pengujian Black Box pada Aplikasi Perpustakaan Menggunakan Teknik Equivalence Partitions,†J. Teknol. Sist. Inf. dan Apl., vol. 3, no. 3, hal. 150, 2020, doi: 10.32493/jtsi.v3i3.5343.

Downloads

Published

2021-10-26