Sistem Pemantau Kecepatan Angin dan Arah Angin Untuk Engine Ground Run Area Berbasis Internet of Things
DOI:
https://doi.org/10.22441/jte.2021.v12i3.005Keywords:
Arduino Uno R3, NodeMCU V3, Kecepatan Angin, Arah Angin, Bot Telegram, IoT Server ThingspeakAbstract
Abstrak— Kecepatan angin dan arah angin adalah bagian penting dalam melaksanakan pengecekan operasional mesin pesawat terbang. Hal ini dikarenakan kecepatan angin dan arah angin dapat mempengaruhi stabilitas yang dapat menyebabkan overheat dan stall pada mesin pesawat terbang. Oleh karena itu dibutuhkan suatu sistem pemantau kecepatan angin dan arah angin yang dapat memberikan informasi kecepatan angin dan arah angin di Engine Ground run area. Informasi yang diberikan dapat diakses secara real-time dan dimana saja melalui Telegram Messenger, sehingga proses pengecekan performa dan kelaikan mesin pesawat terbang dapat berjalan dengan lancar. Sistem pemantau ini berbasis development board Arduino Uno R3 yang akan mengolah data dari sensor kecepatan angin berbasis sensor optocoupler dan sensor arah angin berbasis IC A3144. Data tersebut dikirim ke NodeMCU V3 menggunakan komunikasi data serial. Kemudian NodeMCU V3 akan mengirimkan data kecepatan angin dan arah angin melalui jaringan WiFi ke Telegram Messenger dan IoT server Thingspeak. Hasil pengujian menunjukkan bahwa sistem pemantau kecepatan angin dan arah angin dapat berkerja dengan baik. Dari hasil pengujian didapat nilai error rata-rata pengukuran kecepatan angin adalah 4.7637613% dan waktu rata-rata yang dibutuhkan Bot Telegram dalam membalas pesan adalah 5.28 detik.
Downloads
References
Admin, Aircraft Maintenance Manual, Part II Practices and Procedures. Seattle, MA: The Boeing Company, 2020.
Author, Gas Turbine Engine Propulsion. Cengkareng, MA: GMF Aeroasia Training Canter, 2007.
H. Muliadi, “Desain dan Implementasi Sistem Pemantau Cuaca dengan Aplikasi Telegram”, Universitas Komputer Indonesia Bandung, 2019.
D, Oktavian, “Rancang Bangun Alat Monitoring Kecepatan Angin dengan Koneksi Wireless Menggunakan Arduino Uno”, Universitas Sam Ratulangi Manado, 2016.
R. Prabowo, “Rancang Bangun Alat Pengukur Kecepatan Angin Berbasis Microcontroller ATMega 328P”, Universitas Tanjungpura Pontianak, 2018.
S. K. Jaya, “Rancang Bangun Sistem Monitoring Kecepatan Angin, Arah Angin dan Kelembaban Udara Via IoT Cloud Db APK Berbasis Wemos D1”. Universitas Mercu Buana Jakarta, 2018.
Suwarti, Mulyono, B. Prasetiyo, “Pembuatan Monitoring Kecepatan Angin dan Arah Angin Menggunakan Mikrokontroler Arduino”. Universitas Muhammadiyah Semarang, 2017.
T. C. Oktoviana, Y. Gunardi, and F. Supegina, “Rancang Bangun Sistem Monitoring Smart Home Menggunakan Energi Cadangan Berbasis Internet of Things (IoT),” Jurnal Teknologi Elektro, vol. 11, no. 2, p. 85, Jun. 2020, doi: 10.22441/jte.2020.v11i2.004.
R. Prabowo, A. Muid, and R. Adriat, “Rancang Bangun Alat Pengukur Kecepatan Angin,” PRISMA FISIKA, vol. 6, no. 2, pp. 94–100, 2018, doi: 10.26418/pf.v6i2.25260.
M. Azlinaa, “Pembuatan Alat Ukur Kecepatan Angin Dan Penunjuk Arah Angin Berbasis Mikrokontroller At-Mega8535,” Saintia Fisika, vol. 6, no. 1, 2013, Accessed: Sep. 21, 2021. [Online]. Available: https://jurnal.usu.ac.id/index.php/sfisika/article/view/5586.
Downloads
Published
How to Cite
Issue
Section
License
The copyright to this article is transferred to Universitas Mercu Buana (UMB) if and when the article is accepted for publication. The undersigned hereby transfers any and all rights in and to the paper including without limitation all copyrights to UMB. The undersigned hereby represents and warrants that the paper is original and that he/she is the author of the paper, except for material that is clearly identified as to its original source, with permission notices from the copyright owners where required. The undersigned represents that he/she has the power and authority to make and execute this assignment.
We declare that:
1. This paper has not been published in the same form elsewhere.
2. It will not be submitted anywhere else for publication prior to acceptance/rejection by this Journal.
3. A copyright permission is obtained for materials published elsewhere and which require this permission for reproduction.
Furthermore, I/We hereby transfer the unlimited rights of publication of the above mentioned paper in whole to UMB. The copyright transfer covers the exclusive right to reproduce and distribute the article, including reprints, translations, photographic reproductions, microform, electronic form (offline, online) or any other reproductions of similar nature.
The corresponding author signs for and accepts responsibility for releasing this material on behalf of any and all co-authors. This agreement is to be signed by at least one of the authors who have obtained the assent of the co-author(s) where applicable. After submission of this agreement signed by the corresponding author, changes of authorship or in the order of the authors listed will not be accepted.
Retained Rights/Terms and Conditions
1. Authors retain all proprietary rights in any process, procedure, or article of manufacture described in the Work.
2. Authors may reproduce or authorize others to reproduce the Work or derivative works for the authors personal use or for company use, provided that the source and the UMB copyright notice are indicated, the copies are not used in any way that implies UMB endorsement of a product or service of any employer, and the copies themselves are not offered for sale.
3. Although authors are permitted to re-use all or portions of the Work in other works, this does not include granting third-party requests for reprinting, republishing, or other types of re-use.









