Abstract :
The protection system is a very important system in the electric power system, because this protection system functions as a safety for electrical equipment from abnormal events or disturbances. In this study ever current relay is used as a protection system, over current relay works based on the current value measured by the PZEM-004T current sensor. The value of the current sensor will be output from the arduino to the relay module, so that the relay will work according to the current limit setting that will be progammed on the UNO arduino as a command to the relay module to break or connect the current in the circuit. The current value and the state of the overcurrent relay will be displayed on the LCD that receives input from the arduino Uno. Very inverse type overcurrent relay (OCR) is one type of OCR that has a longer trip delay time for smaller fault currents and faster at large currents. This allows the system to aperate again faster after a small disturbance. This research aims to design and build dan Arduino-based very inverse type OCR. The system uses PZEM-004T current sensor to detect the current and Arduino Uno microcontroller to process the data and control the relay. The characteristics of the trip delay time of the very inverse type OCR are programmed according to the IEEE C37.122 Standard. With TMS values ranging from 0.01 to 13 seconds. The programme is given setting current value of 2 Amperes and a TMS value of 0.05 seconds. In the test carried out, it was found that the current and trip time were directly proportional to the simulation experiments in ETAP although there was still a slight difference in the tiime difference in current disconnection based on the comparison curve.
Keywords :
Arduino, Overcurrent relay, Pzem-004t, Very inverse.References :
- Herlambang, M. Pujiantara, and A. Priyadi,”non-standard inverse characteristic curve modelling of digital overcurrent relay with lagrange interpolation method,”Engineering Journal/Journal of Engineering ITS, vol.5,no.2 (2016).
- Frandhiyawan, I. Winarno, and D.Rahmatullah,”Overcurrent relay design based on internet of things(IOT) monitoring and arduino as 1 phase electronic protection, Proceedings of National Science and Technology.[ vol.1, no.1 (2019).
- Feriyanto, “Design of overcurrent and voltage fluctuation protection system based on arduino atmega2560 SD card module – UMB Repository,” Mercubuana ac.id, Thesis Nov 2019, doi http://repository mercubuana.ac.id/72050/12/1.%20Halam%20Judul.pdf
- Nazhrullah and N. A. Kharisma, “Overcurrent protection relay based on arduino microcontroller,” PoliGrid, Electrical Engineering of Samarinda State Polytechnic vol 4. no. 1, Νου. 2023, doi https://doi.org/10.46964 poligrid.v411.9.
- Prawira and Wijaya, “arduino-based overcurrent protection relay design.” Thesis (2022). Available: http://eprints itn.ac.id/10649/4/Jurnal.pdf
- Amrulloh and A. Karim, “design of prototype overcurrent relay with arduino-based inverse characteristics at the electrical power system laboratory brawijaya knowledge garden, Ub.ac.id, Mar. 2018, doi http://repository.ub.ac.id/id/eprint/9279/1/BAB%201.pdf
- Daud, “design of overload and short circuit current protection module,” Journal of Energy Engineering, vol. 9, no. 1, pp. 37-44, Nov. 2019, doi: https://doi.org/10.35313/energi.v911.1643.
- Salim, “prototype design of over current protection device using arduino control Eprints ITN Repository,” Inac.id, Oct. Thesis, 2018, doi: http://eprints.itn.ac.id/9064/1/1412001_COVER.p df.
- Rohmanu and Widiyanto, “safe distance sensor system in a car based on arduino atmega328 microcontroller”. SIMANTIK Informatics Journal, 3(1), 7-14. Vol. 3, no 1 (2018).
- Adriansyah and Hidyatama, “prototype elevator design using arduino atmega 328p microcontroller”. Journal of Electrical Technology, 4(3), 100- 112. Vol. 4, no 3 (2013).
- Subagyo and Suprianto, (2017). “3-phase unbalanced current monitoring system based Ion arduino Uno. Journal of Electrical Engineering, 6(3), 213- 221. Vol. 6, no 3 (2017).
- Almanda and H. Yusuf, “design of overload current protection prototype on DC load using microcontroller,” Electum Journal, vol. 14, no. 2 (2017), doi: https://doi.org/10.24853/elektum. 14.2.25-34.
- Novriandry, D. Triyanto, and Suhardi, “prototype of monitoring system and prepaid electricity token charging using website-based arduino Uno,” Coding: Journal of Computers and Applications, vol. 8, no. 3, pp. 61-61, Oct. 2020,
doi: https://doi.org/10.26418/coding v8i3.43320.
- “view of uninterruptible power supply design using microcontroller-based LCD display,” Unsrat.ac.id, Vol. 4, no. 2 (2015) https://ejournal.unsrat.ac.id/v3/index.php/elekdankom/article/view/6805/6 329 (accessed Apr. 24, 2024)
- “view of the design of voltage breakers on kwh meters of PLN customers,” Unand ac id, Vol 01. no 1 (2021) http://jarpet ft.unand.ac.id/index php jarpet/article/view/2/20 (accessed Apr. 24, 2024).
- Subagyo and Suprianto, (2017), 13-phase unbalanced current monitoring system based on arduino Uno. Journal of Electrical Engineering, 6(3), 213- 221. Vol. 6, no 3 (2017).
- Syhari and Bintoro, “arduino Uno based power monitoring and controling using PZEM-004T sensor. Journal of Electric Energy, 12(1), 43-51. Vol 12, по 1 (2023).
- Mardiati, F. Ashadi, and G. F. Sugihara, “Design of a prototype safe distance warning system for four-wheeled vehicles based on atmega32 microcontroller, TELKA: Journal of Telecommunications, Electronics, Computing and Control Telka, vol. 2, no. 1, pp. 53-61, May 2016, doi https://doi.org/10.15575/telka.v2n1.53-61.
- “view of arduino Uno-based light intensity detection device as a marker of day-night time change for the blind,” Jutelekmadani.org. Vol. 3, no. 1 (July 2021).
- Januar, Sudrajat, and Sunarto, “design of low voltage protection practicum tool against overcurrent based on Iec 60898-1 standard,” Proceedings of Industrial Research Workshop and National Seminar, vol. 14, no. 1 (2023)
- Gunawan, “analysis of working time characteristics of over current and ground fault relay of 150KV gejayan substation coupling bay,” Ugm.ac.id, Final Project 2021.