Rancang Bangun Sistem Proteksi Otomatis pada Generator Turbin Gas dari Arus Berlebih dan Drop Tegangan Guna Meningkatkan Keandalan Operasional
DOI:
https://doi.org/10.55606/jurritek.v5i1.8258Keywords:
Automatic Protection, ESP32, INA219 Sensor, Overcurrent, UndervoltageAbstract
Gas turbine generators play an important role in providing electrical energy, especially in the maritime sector, but they are vulnerable to disturbances such as overcurrent and undervoltage, which can cause equipment damage. This study aims to design and test an automatic protection system based on the ESP32 microcontroller with the INA219 sensor to detect current and voltage, as well as a relay as a circuit breaker. The method used is an experimental approach including static and dynamic testing, both with and without a 5W AC lamp load as a simulation of real loading conditions. Test results show that the average sensor reading error is 2.65% for current and 1.76% for voltage, which is still within the ±3% tolerance limit. The system is able to disconnect the load when any parameter exceeds the protection threshold, although there are slight inconsistencies in the relay response due to sensor reading fluctuations. In conclusion, this automatic protection system is proven to be 85% accurate and responsive in maintaining the operational reliability of the gas turbine generator, making it applicable as a preventive solution against electrical disturbances in marine environments.
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References
Badan Standardisasi Nasional. (2000). Standar nasional Indonesia: Persyaratan umum instalasi listrik (PUIL 2000). BSN.
Banzi, M., & Shiloh, M. (2022). Arduino IDE sebagai lingkungan pengembangan perangkat lunak untuk mikrokontroler Arduino. O’Reilly Media.
Berahim, H. (2020). Teknik tenaga listrik dasar. Graha Ilmu.
Chapman, S. J. (2020). Electric machinery and power system fundamentals (2nd ed.). McGraw-Hill Education.
Dwi, D. S., Edy, E. K. A., & Prihastono. (2022). Dasar-dasar sistem operasi permesinan kapal. CV Jakad Media Publishing.
Fikar, M., Yuana, H., & Wulansari, Z. (2022). Mikrokontroler ESP32 sebagai alat monitoring pintu berbasis web. JATI (Jurnal Mahasiswa Teknik Informatika), 6(2), 767–772. https://doi.org/10.36040/jati.v6i2.5713
Hendrawan, A., Hasbi, M., & Rahman, N. (2022). Simulasi safety device overheat generator set engine berbasis Arduino. Jurnal Intekna: Informasi Teknik dan Niaga, 22(1), 18–24.
Hughes, A. (2022). Electric motors and drives: Fundamentals, types, and applications (5th ed.). Elsevier.
Kadir, A. (2020). Pembangkit tenaga listrik. Universitas Indonesia.
Kiswantono, A., Afianti, H., & Purwahyudi, B. (2024). Proteksi tegangan berbasis IoT: Sistem monitoring cerdas dan responsif. SinarFe7, 6(1), 43–47. https://doi.org/10.30996/elsains.v6i2.11568
Krause, P. C., Wasynczuk, O., & Sudhoff, S. D. (2022). Analysis of electric machinery and drive systems (4th ed.). Wiley-IEEE Press.
Marsudi, D. (2020). Pembangkitan energi listrik. PT Gelora Aksara Pratama.
Muslim, S., Joko, & Wanarti, P. R. (2020). Teknik pembangkit tenaga listrik. PT Macanan Jaya Cemerlang.
Nasar, S. (2021). Motor DC dan aplikasinya dalam sistem penggerak. Penerbit Teknologi.
Pratama, A. Y., Kurniawan, E., & Dahri, M. (2024). Prototipe sistem monitoring, proteksi, dan kontrol putaran pada mesin emergency generator menggunakan LoRa untuk mencegah kerusakan pada sistem di kapal. Globe: Publikasi Ilmu Teknik, Teknologi Kebumian, Ilmu Perkapalan, 2(4), 125–138. https://doi.org/10.61132/globe.v2i4.571
Saefulloh, B. B., & Herlambang, S. M. (2024). Rancang bangun sistem proteksi pada motor DC dari gangguan arus dan suhu berlebih berbasis internet of things. Jurnal 7 Samudra, 9(1), 17–26. https://doi.org/10.54992/7samudra.v9i1.168
Wagyana, A., & Rahmad. (2021). ESP32: Mikrokontroler SoC terpadu dengan WiFi dan Bluetooth. Jurnal Teknologi Mikrokontroler, 240.
Widiarto, H. (2023). Rancangan mock up sistem monitoring panel tegangan rendah berbasis transmission control protocol/internet protocol (TCP/IP). Knowledge: Jurnal Inovasi Hasil Penelitian dan Pengembangan, 3(1), 42–50. https://doi.org/10.51878/knowledge.v3i1.2136
Widoyoko, E. P. (2020). Evaluasi program pembelajaran: Panduan praktis bagi pendidik dan calon pendidik. Pustaka Pelajar.
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