Implementasi NodeMCU dan Blynk Dalam Sistem Pendeteksi Kebakaran Berbasis IoT

Main Article Content

Nurlaily Asronika
Alifiyul Akyun
Nadhifah Lutfiyah Mahmudah
Rofiqoh Wahyuningtyas
Agung Nugroho Pramudhita

Abstract

Fires can cause material losses and human lives. Therefore, an effective fire early detection system is needed to prevent greater losses. In this research, ESP8266 is used as a microcontroller to connect fire detection sensors such as KY-026 Fire Sensor and MQ-2 Smoke Sensor. This early fire detection system is also equipped with a buzzer as an alarm and NodeMCU as a platform to connect the system to the Internet network and Blynk as a medium to provide real-time fire notifications to users. Tests were conducted by comparing the response time and accuracy of fire detection at different distances. The test results show that the fire early detection system built has an average response time of 2 seconds and a detection accuracy rate of 95%.

Article Details

Section
Art Jan

References

T. Hafzara Siregar, S. Permana Sutisna, G. Eka Pramono, and M. Malik Ibrahim, “RANCANG BANGUN SISTEM PENDETEKSI KEBAKARAN BERBASIS IOT MENGGUNAKAN ARDUINO,” 2020. [Online]. Available: http://ejournal.uika-bogor.ac.id/index.php/ame/index

Y. S. Kristama and I. R. Widiasari, “Alat Pendeteksi Kebakaran Dini Berbasis Internet Of Things (IoT) Menggunakan NodeMCU Dan Telegram,” JURNAL MEDIA INFORMATIKA BUDIDARMA, vol. 6, no. 3, p. 1599, Jul. 2022, doi: 10.30865/mib.v6i3.4445.

J. M. S. Waworundeng, “Desain Sistem Deteksi Asap dan Api Berbasis Sensor, Mikrokontroler dan IoT Design of Smoke and Flame Detection Systems Based on Sensors, Microcontrollers and IoT,” Cogito Smart Journal |, vol. 6, no. 1, 2020.

M. Hafiz and O. Candra, “Perancangan Sistem Pendeteksi Kebakaran Berbasis Mikrokontroller dan Aplikasi Map dengan Menggunakan IoT,” JTEV (Jurnal Teknik Elektro dan Vokasional), vol. 7, no. 1, p. 53, Mar. 2021, doi: 10.24036/jtev.v7i1.111420.

A. Nabilfathin, “PERANCANGAN ALAT MONITORING KONDISI LINGKUNGAN DAN PREDIKSI CUACA BERTENAGA SURYA BERBASIS MIKROKONTROLER MENGGUNAKAN METODE FUZZY LOGIC.”

S. Suhartini, M. Peslinof, M. Ficky Afrianto, P. Studi Fisika, F. Sains dan Teknologi, and U. Jambi, “STRING (Satuan Tulisan Riset dan Inovasi Teknologi) RANCANG BANGUN SISTEM DETEKSI KEBAKARAN PADA RUANGAN BERBASIS INTERNET OF THINGS (IOT).”

S. Rolis, K. Aji Wibisono, M. Ulum, R. Alfita, and dan Adi Kurniawan Saputro, “CYCLOTRON : Jurnal Teknik Elektro Implementasi Sistem Pendeteksi Api 360 Derajat Dengan Metode Multiplexer Dan Logika Fuzzy Pada Robot Pemadam Api Beroda,” 2022.

R. T. Aldisa, F. N. Karel, and M. Aldinugroho, “Sistem Peringatan Dini Kebakaran Dengan Flame Sensor dan Arduino Uno R3,” JURNAL MEDIA INFORMATIKA BUDIDARMA, vol. 6, no. 1, p. 453, Jan. 2022, doi: 10.30865/mib.v6i1.3499.

Prosiding Seminar Nasional Teknologi dan Informatika, 2017 : Kudus, 25 Juli 2017.

C. F. Permatasari and H. Dhika, “JISA (Jurnal Informatika dan Sains) Optimasi Jalur Transfer Data dari HTTP menjadi MQTT pada IoT menggunakan Cloud Services,” vol. 01, no. 02, 2018.

N. Hidayat, S. Hidayat, N. A. Pramono, and U. Nadirah, “Sistem Deteksi Kebocoran Gas Sederhana Berbasis Arduino Uno,” Rekayasa, vol. 13, no. 2, pp. 181–186, Aug. 2020, doi: 10.21107/rekayasa.v13i2.6737.

J. Ilmiah MIKA AMIK Al Muslim, A. Kusna Wibowo, and D. Pernata, “Prototipe Sistem Keamanan Rumah Dengan Metode Motion Detection Berbasis Web SMS”.

“2018_Pelatihan_Dan_Pembuatan_Internet_Of”.

B. Tri Wahjo Utomo, D. Setya Saputra, and S. Asia Malang, “Simulasi Sistem Pendeteksi Polusi Ruangan Menggunakan Sensor Asap Dengan Pemberitahuan Melalui SMS ( Short Message Service ) Dan Alarm Berbasis Arduino,” 2016.

J. M. S. Waworundeng, “Desain Sistem Deteksi Asap dan Api Berbasis Sensor, Mikrokontroler dan IoT Design of Smoke and Flame Detection Systems Based on Sensors, Microcontrollers and IoT,” Cogito Smart Journal |, vol. 6, no. 1, 2020.