Perancangan Prototype Monitoring dan Akuisi Data Pengujian Noise Trafo Berbasis ESP32

Authors

  • Fitri Politeknik Negeri Malang
  • Indrazno Siradjuddin Politeknik Negeri Malang
  • Dinda Ayu Permatasari Politeknik Negeri Malang
  • Wahyu Tri Wahono Politeknik Negeri Malang
  • Abu Yazid Albastomi Politeknik Negeri Malang

DOI:

https://doi.org/10.33795/elposys.v11i3.6273

Keywords:

Noise, Transformer, Monitoring, ESP32, Prototype

Abstract

The noise level on the transformer is very important to be considered, because it can cause problems if it does not meet the standards. Excessive noise can violate regulations set by the Ministry of Environment regarding noise limit thresholds, In addition, excessive noise also indicates an indication of a bad transformer construction and will result in the performance of the transformer itself. PT Trafoindo Prima Perkasa, as one of the largest and first transformer manufacturers in Indonesia, tests every transformer produced, including its noise level, The testing is conducted in the Quality Check division. However, testing that is still done manually often causes queue buildup in the production line, along with the increasing demand, especially from PLN, a faster testing process is needed but still meets the set standards. Therefore, a faster, safer, and more efficient testing method is needed to support a continuous production. Based on this requirement, the author designs a prototype monitoring system and data acquisition of ESP32-based transformer noise testing to help speed up and simplify the testing process, so that the finished product can be sent immediately without reducing the quality and standards that have been set.

References

F. Maulidya Anggrayni and Dzulkiflih, “Rancang Bangun Sound Level Meter Berbasis Arduino Uno untuk Mengukur Kebisingan Intermiten Akibat Kereta Api Melintas,” J. Inov. Fis. Indones., vol. 11, pp. 8–17, 2022.

M. A. Auliq and F. R. Zamroni, “Prototype Alat Pendeteksi Dini Gangguan Fuse Cut Out (FCO) Sistem Kelistrikan PLN Berbasis IoT,” J. Tek. Elektro dan Komputasi, vol. 3, no. 2, pp. 95–103, 2021, [Online]. Available: http://jurnal.unmuhjember.ac.id/index.php/ELKOM/article/view/5569.

A. Mutohar, “PROTOTYPE ALAT MONITORING KUALITAS UDARA DI RUANG OPERASI YANG TERINTEGRASI BERBASIS IoT,” Repository.Unissula.Ac.Id, 2021, [Online]. Available: http://repository.unissula.ac.id/22970/12/Magister Teknik Elektro_20601700003_fullpdf.pdf.

M. J. Manurung, P. Poningsi, S. R. Andani, M. Safii, and I. Irawan, “Door Security Design Using Fingerprint and Buzzer Alarm Based on Arduino,” J. Comput. Networks, Archit. High-Performance Comput., vol. 3, no. 1, pp. 42–51, 2021, doi: 10.47709/cnahpc.v3i1.929.

A. Alfan, P. Murdiyat, and L. H. Gunanto, “Rancang Bangun Sensor Node Untuk Sistem Monitoring Energi Listrik Nirkabel Pada Gedung Dalam Kampus Politeknik Negeri Samarinda,” PoliGrid, vol. 2, no. 1, p. 1, 2021, doi: 10.46964/poligrid.v2i1.707.

Wahyudi, Jumrianto , and A. Syakur, “Kalibrasi Sensor Tegangan dan Sensor Arus dengan Menerapkan Rumus Regresi Linear menggunakan Software Bascom AVR Info Articles,” J. Syst. Inf. Technol. Electron. Eng., vol. 1, no. 1, pp. 1–14, 2020, [Online]. Available: http://e-journal.ivet.ac.id/index.php/jsitee.

H. L. Latupeirissa, “Analisa Umur Pakai Transformator Distribusi 20 Kv Di Pt. Pln Cabang Ambon,” J. Simetrik, vol. 8, no. 2, pp. 126–132, 2018, doi: 10.31959/js.v8i2.101.

P. Pendriadi, S. Meliala, M. A. Muthalib, and A. BIntoro, “Studi Kadar Gas Amonia Menggunakan Sensor Amonia Mq135 Menggunakan Spreadsheet Berbasis Internet of Thing (Iot),” Transm. J. Ilm. Tek. Elektro, vol. 25, no. 2, pp. 75–84, 2023, doi: 10.14710/transmisi.25.2.75-84.

M. Fajar and A. Munir, “Perancangan Sistem Pendeteksi Jarak Aman Parkir Berbasis Mikrokontroller Arduino,” Jtriste, vol. 5, no. 1, pp. 66–78, 2018, [Online]. Available: www.google.com.

B. S. Dewa, I. H. Santoso, and Fardan, “Perancangan Dan Implementasi Alat Pendeteksi Kebisingan Kendaraan Bermotor Berbasis Internet Of Things Dengan Menggunakan Sensor KY-037 Dan Sensor MAX4466,” e-Proceeding Eng., vol. 8, no. 8, p. 3463, 2022.

A. Mulyana and S. S. Nurdin, “Perancangan alat uji kebisingan knalpot sepeda motor berbasis mikrokontroler PI16F877A,” J. Sist. Komput. Unikom, vol. 1, no. 2, pp. 1–7, 2012.

T. S. Kalengkongan, D. J. Mamahit, and S. R. U. . Sompie, “Rancang Bangun Alat Deteksi Kebisingan Berbasis Arduino Uno,” J. Tek. Elektro dan Komput., vol. 7, no. 2, p. 183, 2018, doi: 10.1093/nq/158.24.431c.

N. T. Febriyanti, “PERANCANGAN SISTEM MONITORING KEBISINGAN SECARA REALTIME BERBASIS WEBSITE DALAM LINGKUNGAN KERJA SEBAGAI PENDUKUNG DATA KESEHATAN DAN KESELAMATAN KERJA (K3),” Universitas Lampung, 2023.

Nur Atikah, Tuti Hartati, Agus Bahtiar, Kaslani, and Odi Nurdiawan, “Sistem Image Capturing Menggunakan ESP32-Cam Untuk Memonitoring Objek Melalui Telegram,” KOPERTIP J. Ilm. Manaj. Inform. dan Komput., vol. 6, no. 2, pp. 49–53, 2022, doi: 10.32485/kopertip.v6i2.141.

R. B. A. Hastariyadi and S. M. Sani, “PROTOTIPE PENGUKUR VOLUME BEJANA UKUR STANDAR BERBASIS INTERNET OF THINGS DALAM TERA DAN TERA ULANG POMPA UKUR BAHAN BAKAR,” vol. 12, no. 3, 2024.

Downloads

Published

2024-10-30

How to Cite

Fitri, Siradjuddin, I., Permatasari, D. A., Wahono , W. T., & Albastomi, A. Y. (2024). Perancangan Prototype Monitoring dan Akuisi Data Pengujian Noise Trafo Berbasis ESP32. Elposys: Jurnal Sistem Kelistrikan, 11(3), 196–200. https://doi.org/10.33795/elposys.v11i3.6273