Sistem Monitoring Kecepatan Otoped Listrik Menggunakan Baterai LiFePO4 sebagai Transportasi Alternatif

Authors

  • Ahmad Firyal Adila Politeknik Elektronika Negeri Surabaya
  • Rafli Maulana Abdullah Politeknik Elektronika Negeri Surabaya
  • Irianto Irianto Politeknik Elektronika Negeri Surabaya
  • Diah Septi Yanaratri Politeknik Elektronika Negeri Surabaya
  • Sutedjo Sutedjo Politeknik Elektronika Negeri Surabaya
  • Renny Rakhmawati Renny Rakhmawati Politeknik Elektronika Negeri Surabaya

DOI:

https://doi.org/10.32492/jeetech.v6i1.6103

Keywords:

Autoped, Speed monitoring system, LiFePO4 battery, Campus Area

Abstract

Autoped has become a popular alternative in environmentally friendly urban transportation. It uses batteries as the main power source to drive their electric motors. However, efficient and optimal battery usage is essential to maintain the performance and durability of autoped. This study aims to design a speed monitoring system for autoped using LiFePO4 batteries by considering variations in user loads. This monitoring system informs autoped drivers about the speed when used and battery usage. This electric autoped is equipped with a DC brushed motor with a specification of 24 Volt/500 Watt. The speed is measured using a metal proximity sensor that functions without direct contact, thus ensuring consistent measurements and reducing the risk of errors due to physical interaction. In addition, a load cell sensor with a maximum weight measurement of 100 kg is used to classify user's weight which is divided into three variations: 35-45 kg, 46-55 kg, and 56-65 kg. As the main energy source, this system uses a LiFePo4 battery with a specification of 24 Volt/36 Ah. The system was tested on a flat track on the campus, where the scooters were used to support environmentally friendly mobility around the campus area. This test ensured that the designed speed monitoring system was able to provide real-time data on scooter performance based on user weight, as well as support increased efficiency of battery energy use.

References

Schelte, N., Severengiz, S., Schünemann, J., Finke, S., Bauer, O. and Metzen, M., "Life cycle assessment on electric moped scooter sharing," Sustainability, 13(15), p.8297. 2021. doi.org/10.3390/su13158297

H. W. Putra, "Smart Automatic Scooter : Implementasi Skuter Otomatis Berbasis Smart Safety Dalam Berkendara," Proyek Akhir, PENS, 2020.

M. Rifa’i, "Rancang Bangun Battery Charger dengan Metode Constant Current Constant Voltage untuk Sepeda Listrik," Proyek Akhir, PENS, 2020.

B. Nainggolan, F. Inaswara, G. Pratiwi, and H. Ramadhan, “Rancang Bangun Sepeda Listrik Menggunakan Panel Surya Sebagai Pengisi Baterai,” Jurnal Poli-Teknologi, vol. 15, no. 3, Mar. 2017.

A. D. Tarigan, P. Wibowo, and A. S. Tarigan, “Perancangan Otoped Listrik Menggunakan Panel Surya Sebagai Media Transportasi,” Proceeding Seminar Nasional Ilmu Komputer, vol. 2, no. 1, pp. 7–12, Sep. 2022.

G. D. A. P. Dantes, K. R. Dantes, and G. W. Widayana, “PENGARUH VARIASI PEMBEBANAN TERHADAP TORSI, DAYA DAN DEPTH OF DISCHARGE (DOD) PADA PROTOTIPE SCOOTER PORTABLE (E-GASPOL),” repo.undiksha.ac.id, Aug. 01, 2023

S. G. Tidargo, A. Rusdinar, and P. Wibawa, “Perancangan Dan Implementasi Smart Otoped Electric,” eProceedings of Engineering, vol. 5, no. 3, Dec. 2018.

B. A. Bayuprakoso, M. Munadi, and P. Paryanto, “ANALISIS ESTIMASI STATE OF CHARGE BATERAI LI-ION BERBASIS OPEN CIRCUIT VOLTAGE DAN COULOMB COUNTING PADA OTOPED,” JURNAL TEKNIK MESIN, vol. 9, no. 3, pp. 429–434, Jul. 2021.

Sinuraya, A., Sinaga, D.H. and Simamora, Y., "Analysis of LiFePO4 Battery Size, Capacity, and Charging in Electric Vehicles with BLDC Motor Drive." Proceedings of the 4th International Conference on Innovation in Education, Science and Culture, ICIESC Medan, Indonesia. December 2022.

A. F. Adila, I. Sudiharto, M. M. Rifadil, E. Wahjono, M. Z. Efendi, Y. C. Arif, Pengukuran Listrik dan Instrumentasi, Deepublish, Yogyakarta, 2024.

Published

2025-05-12

How to Cite

[1]
A. Firyal Adila, R. Maulana Abdullah, I. Irianto, D. Septi Yanaratri, S. Sutedjo, and R. R. Renny Rakhmawati, “Sistem Monitoring Kecepatan Otoped Listrik Menggunakan Baterai LiFePO4 sebagai Transportasi Alternatif”, jeetech, vol. 6, no. 1, pp. 25-38, May 2025.

Issue

Section

Articles