JONATHAN ADRIAN, . (2024) SISTEM MONITORING SUHU, KONDISI, DAN KUALITAS MINYAK PADA INTER BUS TRANSFORMATOR (IBT) BERBASIS INTERNET OF THINGS (IOT). Sarjana thesis, UNIVERSITAS NEGERI JAKARTA.
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Abstract
Tujuan dari penelitian ini adalah untuk merancang, membuat dan menguji suhu dan kualitas minyak pada inter bus transformator (IBT) berbasis internet of things (IoT) secara inovatif untuk meminimalisir terjadinya gangguan dan berkurangannya umur pada trafo. Perancangan dilakukan dengan membuat alat yang dilengkapi oleh mikrokontroler ESP32, 3 buah input dan 2 buah output. Penelitian dilakukan dengan menggunakan metode rekayasa Teknik. Hasil penelitian alat monitoring suhu dan kualitas minyak pada trafo IBT berbasis internet of things (IoT) dapat direalisasiskan dengan menggabungkan sub-sistem diantaranya ESP32, sensor suhu DS18B20, non-contact liquid level sensor XKC-Y25-T12V, sensor warna TCS3200, LCD dan buzzer. Sistem telah diuji mengenai ESP32 sebagai mikrokontroler, tiga input yaitu sensor suhu DS18B20 sebagai pengujian suhu, non-contact liquid level sensor XKC-Y25-T12V sebagai pengujian kapasitas ketersedian minyak yang berada di wadah alat prototipe trafo IBT, sensor warna TCS3200 sebagai pengujian tingkat warna kualitas minyak. Selain itu, terdapat dua output yaitu LCD sebagai penampil hasil pengujian sensor dan buzzer sebagai indikator ketersedian minyak di dalam wadah alat prototipe trafo IBT. Keunggulan alat ini yaitu mudah digunakan dan efisien. ***** The purpose of this research is to design, manufacture and test the temperature and quality of oil in the inter bus transformer (IBT) based on the internet of things (IoT) innovatively to minimize the occurrence of interference and reduce the life of the transformer. The design is done by making a device equipped with an ESP32 microcontroller, 3 inputs and 2 outputs. The research was conducted using engineering methods. The results of research on temperature and oil quality monitoring tools for IBT transformers based on internet of things (IoT) can be realized by combining sub-systems including ESP32, DS18B20 temperature sensor, non-contact liquid level sensor XKC-Y25-T12V, TCS3200 color sensor, LCD and buzzer. The system has been tested regarding the ESP32 as a microcontroller, three inputs, namely the DS18B20 temperature sensor as temperature testing, the non-contact liquid level sensor XKC-Y25-T12V as testing the oil availability capacity in the IBT transformer prototype tool container, the TCS3200 color sensor as color level testing oil quality. Apart from that, there are two outputs, namely an LCD as a display of sensor test results and a buzzer as an indicator of oil availability in the IBT transformer prototype tool container. The advantage of this tool is that it is easy to use and efficient.
Item Type: | Thesis (Sarjana) |
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Additional Information: | 1). Dr. Muhammad Yusro, M.T. ; 2). Drs. Pitoyo Yuliatmojo, M.T. |
Subjects: | Teknologi dan Ilmu Terapan > Teknik Elektronika |
Divisions: | FT > S1 Pendidikan Teknik Elektronika |
Depositing User: | Users 21252 not found. |
Date Deposited: | 02 Feb 2024 04:25 |
Last Modified: | 02 Feb 2024 04:25 |
URI: | http://repository.unj.ac.id/id/eprint/44178 |
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