Rancang Bangun Alat Ukur Emisi Gas Buang Kendaraan Bermotor Dengan Penampil Smartphone Android

Authors

  • Refi Widya Institut Teknologi Dan Bisnis Indonesia, Medan Author
  • Melly Syahfitri Institut Teknologi dan Bisnis Indonesia, Medan Author
  • Taufiq Hidayat Institut Teknologi dan Bisnis Indonesia, Medan Author
  • Khalil Afif Institut Teknologi dan Bisnis Indonesia, Medan Author
  • Sinekmehuli Br Perangin Angin Institut Teknologi dan Bisnis Indonesia, Medan Author

Keywords:

As Emissions, Motor Vehicles, Smartphones, Sensors, Android

Abstract

Air pollution has become an increasingly complex and worrying global problem, with motor vehicles playing a key role as the main contributor Every year, millions of vehicles operate on the road, producing an ever-increasing volume of exhaust gas and having a continuing negative impact on air quality and public health. The composition of motor vehicle exhaust gas is very complex and contains a number of hazardous compounds Carbon monoxide, nitrogen oxides, hydrocarbons, sulfur dioxide, and dust particles are some of the main components produced from the fuel combustion process These compounds not only pollute the air but also directly affect human health. Conventional measurement methods generally require expensive equipment, complicated procedures, and can only be accessed by certain institutions or agencies. As a result, the general public has practically no direct access to find out the emission conditions of the vehicles they use every day. This limitation creates a significant information gap between technical data and public awareness. Modern smartphones are no longer just communication tools, but have evolved into sophisticated computing devices. Therefore, the author utilizes smartphones with the aim of displaying the accuracy, reliability, and reproducibility of measurement results produced by the system. The significance of the research is not only limited to the technological aspect, but also has strategic implications in environmental management. By providing democratic access to emission information, this research has the potential to empower communities to actively participate in air pollution control efforts. Moreover, this research is a strategic effort to transform the way communities understand, measure, and respond to environmental challenges in the digital era. From the results of the MQ-7 gas sensor test, it works at a minimum range of 300-500ppm at Hazardous air status. To reach the minimum measurement point of the MQ-2 and MQ-7 gas sensors requires quite a long time.

References

[1] Anata dan Harahap (2023), “Rancang Bangun Sistem Pengaturan lalu lintas Otomatis pada Area Perbaikan Jalan Berbasis Ardiono”. JET (Journal of Electrical technology),8(1),13-16).

[2] Aqham A.A dan Haidar R (2020), “Perancangan Kipas Angin Otomatis Menggunakan Sensor Suhu Dan Suara Berbasis Mikrokontroler”. (Journal Of Informatics Education).

[3] Arief A.B, Wardi dan Harahap M.U (2024), “Rancang Bangun Sistem Kendali Otomatis Dan Monitoring Suhu Dan Kelembapan Pada Rumah Burung Walet Berbasis Blynk”. (Jurnal Informatika dan Teknik Elektro Terapan).

[4] Azhar R.F (2022), “Analisa biaya kerugian emisi gas buang kendaraan bermotor akibat volume lalu lintas ruas jalan kota bandar lampung”, Fakultas teknik universitas lampung, bandar lampung.

[5] Costa K.I.R (2021), “Rancang Bangun Aplikasi Mobile”. Universitas Palangka Raya Kampus UPR Tanjung Nyaho Jl. Yos Sodarso, Palangka Raya.

[6] Gunawan R, dkk (2021), “Rancang Bangun Sistem Presensi Mahasiswa Dengan Menggunkan Code Berbasis Android”. Elkon: Jurnal Elektronika Dan Komputer, 14(1),47-58).

[7] Haryanto D dan Wijaya R.I (2019), “Tempat Sampah Membuka Dan Menutup Otomatis Menggunakan Sensor Inframerah Berbasis Arduino Uno”. (Jurnal Manajemen Dan Teknik Informatika).

[8] Hermawan, M. Siddik (2020). “RANCANG BANGUN APLIKASI MEDIA PEMBELAJARAN PRAKARYA INTERAKTIF KOMPUTER BERBASIS DESKTOP”. Anista, Universitas Cokrominoto Palopo

[9] Jading A (2021), “Pengantar Dan Aplikasi Perancangan Pengering Pati Sagu”. Andi, Yogyakarta.

[10] Lutfie M, Arman, Abdul, Muhammad A.K (2023). “Pengembangn Sistem Pengukuran Emisi Mobile Pada Kendaraan Bermotor Berbasis Mikrokontroler.” Jurnal Of Mechanical Engineering.

[11] M Amin, Harahap dan Pelawi Z (2023), “Rancang Bangun Sistem Kendali Dan Monitoring Pengolahan Air Limbah Berbasis Plc”. ( Journal of Electrical Technology).

[12] Maleakhi F.W, Ismail S.J.I, Handayani R (2020). “ Pengukuran Kadar Gas Emisi Kendaraan Menggunakan Arduino”. e-Proceeding of Applied Science.

[13] Nusyirwan D, Alfarizi (2019), “Fun Book Rak Buku Otomatis Berbasis Arduino Dan Bluetooth”. Pada Perpustakaan Intuk Nmeningkatkan Kualitas Siswa, Jurnal Ilmiah Pendidikan Teknik Kejuruan (JIPTEK).

[14] Parjito, Rahmawati O dan Ulum F (2022), “Rancang Bangun Aplikasi EAgribisnis Untuk Meningkatkan Penjualan Hasil Tanaman Hortikultura”. (Jurnal Informatika dan Rekayasa Perangkat Lunak).

[15] Prabowo R.R, Kusnadi dan Subagio R.T (2020), “Sistem Monitoring Dan Pemberian Pakan Otomatis Pada Budidaya Ikan Menggunakan Wemos Dengan Konsep Internet of Things (IoT)”. ( Jurnal Digit).

[16] Putra F.D, Riyanto J dan Zulfikar A.F (2020), “Rancang Bangun Sistem Informasi Manajemen Aset Pada Universitas Pamulang.”(Journal of Engineering, Technology & Applied Science).

[17] Rauf JHA dan Prastowo A.T (2021), “Rancang Bangun Aplikasi Berbasis Web Sistem Informasi Repository Laporan Pkl Siswa”. Studi Kasus Smk N 1 Terbanggi Besar)). Jurnal Teknologi dan Sistem Informasi.

[18] Riyadsyah, Deprinico (2024), “Pemanfaatan Sistem Kontrol (Control System) Pada Smarthome”. (Jurnal Ilmu Komputer dan Pendidikan).

[19] Riyadsyah, Deprinico (2024), “Pemanfaatan Sistem Kontrol (Control System) Pada Smarthome”. (Jurnal Ilmu Komputer dan Pendidikan).

[20] Rustandi A (2020), “Monotoring Arus Dan Daya Listrik Dengan Sistem Notifikasi Dari Smartphone Pada Instalasi Listrik Rumah Tangga Berbasis Internet Of Things (IotT)”.

[21] Samania, (2020), “(Rencana Membangun Aplikasi E-Voting Pemilihan Umum Himpunan Mahasiswa Informatika (HTMI)”. Universitas Cokrominoto Palopo Berbasis Website. D’computer: Jurnal Ilmiah Teknologi Informasi dan Ilmu Komputet, 10(1).

[22] Sawitri Y, (2019), “Dampak Penggunaan Smartphone Terhadap Perkembangan Anak Usia Dini”. Kabupaten Banyumas 2019.

[23] Sehab N.H (2024), “Rancangan Bangun Alat Ukur Frrkuensimeter Berbasis Arduino Uno Dengan Sensor Suara Max4466”. Jurusan Pendidikan Matematika Dan Ilmu Pengetahuan Alam, FTKIP Universitas Jambi..

[24] Sifaunajah A, Arifin M.Z, S.E,M.M, Shabet M.R.A.M (2023), “Mudah membangun jam digital berbasis arduino atmega”.

[25] Simanjuntak R.S (2023), “Rancangan Bangun Otomatis Alarm Saat Terjadi Gempa Bumi Berbasis Arduino Nano”. Program Studi Teknik Elektro, Universitas Islam Sumatera Utara.

[26] Supriyono H, Anton S, Fadillah U, Harismah K (2019). “Rancang Bangun Pengukur Emisi Gas Buang Kendaraan Bermotor Berbasis Mikrokontroler”. Jurnal URECOL.

[27] Surahman A, Prastowo A.T dan Aziz L.A(2022), “Rancang Alat Keamanan Sepeda Motor Honda Beat Berbasis Sim Gsm Menggunakan Metode Rancang Bangun”. (Jurnal Teknologi dan Sistem Tertanam).

[28] Wulandari S, Jupriyadi dan Fadly M (2021), “Rancang Bangun Aplikasi Pemasaran Penggalangan Infaq Beras”. (Journal of Telematics and Information Technology).

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Published

31-07-2025

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