Robot Beroda Pendeteksi Gas Karbon Monoksida dan Metana Berbasis IoT Menggunakan Metode Finite State Machine dan Fuzzy Logic

Wira Adi Winata, Khairul Anam, Ali Rizal Chaidir

Abstract


Occupational Safety and Health (K3) is an important requirement needed in mining. This is because activities in mining have great risks and are associated with unpredictable natural conditions. One of them is the leakage of hazardous gas at the mine site caused by mining activities. This article proposes a wheeled robot to detect carbon monoxide gas and methane gas based on the Internet of Things (IoT) using Finite State Machine (FSM) and Fuzzy Logic. The finite state machine (FSM) in this study is used as a control of the robot’s movement, while fuzzy logic is used as a safety classification of the readable state of dangerous gases. The results showed that the system was capable of detecting gas and the information is successfully sent to a web server. In addition, the use of lidar can detect obstacles around the robot.  


Keywords


methane gas; carbon monoxide gas; fuzzy logic; internet of things

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References


R. Meditama, “Pengaruh Pengetahuan K3 dan Managerial Support Terhadap Sikap Mengutamakan K3 di Sentra Pengrajin Gamelan di Kecamatan Mojolaban, Kabupaten Sukoharjo Jawa Tengah,” J. Teknol. Terap. G-Tech, vol. 4, no. 1, pp. 272–278, 2020.

P. R. Subandi, “Penerapan Keselamatan dan Kesehatan Kerja (K3) Pertambangan di PT. Sumbawa Barat Mineral Kabupaten Sumbawa Barat Provinsi Nusa Tenggara Barat.” Universitas_Muhammadiyah_Mataram, 2021.

A. A. Irawan, “Dampak Ekonomi dan Sosial Aktivitas Tambang Batubara PT. Tanito Harum Bagi Masyarakat Di Kelurahan Loa Tebu Kecamatan Tenggarong,” J. Univ. Mulawarman, vol. 1, no. 1, pp. 46–56, 2017.

D. W. Nugroho, “Implementasi keselamatan dan kesehatan kerja di PT. Antam tbk. Ubpe Pongkor, Bogor, Jawa Barat,” 2009.

U. Sumarna, N. Sumarni, and U. Rosidin, Bahaya Kerja Serta Faktor-faktor yang Mempengaruhinya. Deepublish, 2018.

B. Renaldi, “Rancang Bangun Robot SAR Sebagai Pendeteksi Gas Beracun Pra Evakuasi.” Institut Teknologi Nasional Malang, 2020.

A. D. Saputro, “Rancang bangun robot pendeteksi kadar gas sulfur dioksida (so2) dan gas karbon monoksida (co) untuk ekplorasi kawah ijo objek wisata candi gedong songo berbasis internet of things.” Universitas Islam Negeri Walisongo Semarang, 2020.

D. D. Hutagalung, “Rancang bangun alat pendeteksi kebocoran gas dan api dengan menggunakan sensor MQ2 dan flame detector,” J. Rekayasa Inf., vol. 7, no. 2, 2018.

S. Mluyati and S. Sadi, “Internet Of Things (IoT) Pada Prototipe Pendeteksi Kebocoran Gas Berbasis MQ-2 Dan SIM800L,” J. Tek., vol. 7, no. 2, 2019.

Wardatul Ma’rufah, “Metode Finite State Machine (FSM) Pada Navigasi Mobile Robot Untuk monitoring Suhu Ruangan. 2019.

F. Muhammad, “Simulasi Evakuasi Kebakaran Di Dalam Gedung Pada Kerumunan Heterogen Menggunakan Reciprocal Velocity Obstacle Agent-Based.” Institut Teknologi Sepuluh Nopember, 2018.

J. Martin, E. Susanto, and U. Sunarya, “Kendali Ph Dan Kelembaban Tanah Berbasis Logika Fuzzy Menggunakan Mikrokontroller,” eProceedings Eng., vol. 2, no. 2, 2015.

S. Komariyah, R. M. Yunus, and S. F. Rodiyansyah, “Logika Fuzzy dalam Sistem Pengambilan Keputusan Penerimaan Beasiswa,” Jur. Tek. Inform. Fak. Tek. Univ. Majalengka, pp. 61–69, 2016.

L. Riadhi, “Sistem Pengaturan Oksigen Terlarut Menggunakan Metode Logika Fuzzy Berbasis Mikrokontroler Teensy Board.” Institut Teknologi Sepuluh Nopember, 2017.

R. S. Yulianti, “Pemanfaatan Sensor MQ-4 (Mîngân Qî Lai) untuk Mendeteksi Gas Metana pada Limbah Kotoran Ternak Sapi, Kerbau dan Kuda.” Universitas Islam Negeri Alauddin Makassar, 2020.

E. D. Widianto, M. Khasanah, A. B. Prasetijo, and R. Septiana, “Sistem otomatisasi pembersihan kotoran dan pengaturan suhu kandang kelinci berbasis Arduino Mega2560,” J. Rekayasa Elektr., vol. 13, no. 3, pp. 133–138, 2017.




DOI: https://doi.org/10.17529/jre.v18i1.24485

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