IoT based System for Air Pollution Monitoring in Banda Aceh
Abstract
Keywords
Full Text:
PDFReferences
S. Mulyati and S. Sadi, “Internet-of-things (IoT) pada prototipe pendeteksi kebocoran gas berbasis MQ-2 dan SIM800L,” Jurnal Teknik., vol. 7, no. 2, pp. 64–72, 2019.
M. Iqbal, B. Hermanto, F.-E. Febriansyah, and M. Ridho, “Sistem pendeteksi polusi udara di Kota Bandar Lampung menggunakan teknologi Internet-of-things (IoT),” Jurnal Komputasi, vol. 7, no. 2, pp. 8–18, 2019.
M. Fuad, M. Iqbal, M. Rahmat, H. Sukoco, and H. Alata, “Performance analysis of ZigBee mesh WSN in carbon monoxide gas monitoring system,” TELKOMNIKA Indonesian Journal of Electrical Engineering, vol. 15, no. 3, pp. 576–583, 2015.
A. Zaki, “Rancang bangun sistem instrumentasi pengukuran karbon monoksida dan karbon dioksida menggunakan sensor MQ-135 berbasis Arduino Pro Mini,” Undergraduate thesis, Universitas Brawijaya, 2020.
S. Roy, D. Anurag, and S. Bandyopadhyay, “Testbed implementation of a pollution monitoring system using wireless sensor network for the protection of public spaces,” in Networking and telecommunications: Concepts, Methodologies, Tools, and Application, USA: IGI Global, 2010, pp. 820–833.
M. Aziz, “Measuring Air Pollutants Standard Index (ISPU) with photonics crystal sensor based on wireless sensor network (WSN),” in Proc. 2nd International Conference on Instrumentation and Communication, Information Technology and Biomedical Engineering, 2011, pp. 384–351.
Minister of Environment and Forestry of the Republic of Indonesia “Peraturan Menteri Lingkungan Hidup dan Kehutanan Nomor P.14/MENLHK/SETJEN/KUM.1/7/2020,” Paralegal.id, 2020. [Online]. Available: https://paralegal.id/peraturan/peraturanmenteri-lingkungan-hidup-dan-kehutanan-nomor-p-14-menlhksetjen-kum-1-7-2020/. [Accessed Feb. 08, 2022].
Z.-H. Ali and M. M. Badawy, “Internet-of-things (IoT): definitions, challenges and recent research directions,” International Journal of Computer Application, vol. 128, no. 1, pp. 37–47, 2015.
S. Pasha, “ThingSpeak based sensing and monitoring system for IoT with Matlab Analysis,” International Journal of New Technology and Research, vol. 2, no. 6, pp. 19–23, 2016.
M. Fauzan, “Sistem waktu nyata (real time system),” 2021. [Online]. Available: http://fauzania5.blogspot.com/2017/11/sistem-waktu-nyata-real-time-system.html. [Accessed Mar. 19, 2022].
A. Faroqi, D.-K. Halim, W.-S.-M. Sanjaya, and E.-P. Hadisantoso, “Perancangan alat pendeteksi kadar polusi udara mengunakan sensor gas MQ-7 dengan teknologi wireless HC-05,” Jurnal Istek, vol. 10, no. 2, pp. 33–47, 2017.
D. Kho, “Prinsip kerja DC power supply (adaptor)”, 2021. [Online]. Available: https://teknikelektronika.com/prinsip-kerjadc-power-supply-adaptor. [Accessed Feb. 08, 2022].
M. Mujirudin, N.-F. Noviandy, and H. Ramza, “Pengujian respirator KN95 menggunakan sensor MQ-7 berbasis mikrokontroler Arduino UNO,” Prosiding Seminar Nasional Teknoka, vol. 6, pp. 223–227, 2021.
A.-H. Saptadi, “Perbandingan akurasi pengukuran suhu dan kelembaban antara sensor DHT11 dan DHT22,” Jurnal Infotel, vol. 6, no. 2, no. 2, 2014.
T. Alawiyah, “Pembuatan sistem monitoring kecepatan angin, arah angin dan tekanan udara menggunakan wireless berbasis Arduino UNO,” 2021. [Online]. Available: http://repository.unp.ac.id/29655. [Accessed Feb. 08, 2022].
DOI: https://doi.org/10.17529/jre.v19i3.28686
Article Metrics
Abstract view : 0 timesPDF - 0 times
Refbacks
- There are currently no refbacks.
View My Stats
Jurnal Rekayasa Elektrika (JRE) is published under license of Creative Commons Attribution-ShareAlike 4.0 International License.





