Design of Internet of Thought-assisted Telemetry System for Vehicle Parameter Monitoring System
), Ilmiyati Rahmy Jasril(2), Putra Jaya(3), (1) Padang State University 
(2) Universitas Negeri Padang 
(3) Universitas Negeri Padang 
Corresponding Author
DOI : https://doi.org/10.24036/voteteknika.v13i3.134246
Full Text:
Language : id
Abstract
The rapid development of digital technology encourages the important role of telemetry systems in monitoring various vehicle parameters in real-time. This research aims to design and develop an ESP32 microcontroller-based vehicle telemetry system integrated with several sensors. The sensors used include INA219 sensor to monitor battery voltage and current, MAX6675 sensor to measure engine temperature, and Neo-6M GPS module to determine the position and speed of the vehicle. The measurement results are displayed directly on the LCD screen and sent to IoT platforms such as ThingSpeak and Blynk Legacy via internet connection using WiFi network or SIM800L-based GSM network. The IoT platform serves as a medium for remote data storage and display. This system has been tested on Honda Supra Fit X motorcycle in static and dynamic conditions. The test results show that the system is able to accurately measure vehicle parameters with a small deviation rate compared to standard measuring instruments, namely ±1.0°C for temperature using a SmartSensor AR320+ infrared thermometer and 0.3V for voltage using a Sanwa CD800a digital multimeter. The data transmission system also proved to be stable under various network conditions. This telemetry system offers an efficient, flexible and accessible vehicle monitoring solution to support safety and preventive maintenance.
References
Aliffudin, M. (2024). Sistem Monitoring Energy Mobil Listrik Terintegrasi IoT : Studi Kasus IMEI TEAM UMSIDA IoT Integrated Electric Car Energy Monitoring System : Case Study of IMEI TEAM UMSIDA, 6, 189–196.
Budi, A. S., Bachri, A., Susilo, P. H., Hartantyo, S. D., & Irawan, M. R. (2024). Rancang Bangun Gps Tracker Dan Monitoring Kondisi Baterai Pada Mobil Listrik Surya Unisla Berbasis Mikrokontroler, 6(2). https://doi.org/10.33650/jeecom.v4i2
Fatimah, & Nuryaningsih. (2018). Buku Ajar Buku Ajar.
Hammady, M. R. (2018). Sistem Telemetri Pada Mobil Listrik Inacos Berbasis Iot Universitas Telkom Telemetry System On Inacos Electric Car With Iot Concept Telkom University. E-Proceeding of Engineering, 5(1), 100–106.
Haryo Suprobo, I., Yuandari, A., Hartono, A., Suryo, H. K., Valentina PDM, H., & Aldo, Y. S. (2021). Sistem Telemetri Mobil Listrik Arugo. IMDeC | Industrial and Mechanical Design Conference. Politeknik ATMI Surakarta, 3, 177–177.
Himawan, I. A., Rismawan, T., & Suhardi, S. (2023). Sistem Keamanan Sepeda Motor Menggunakan Gps, Rfid Dan Pembatas Kecepatan Dengan Arduino Uno Berbasis Iot. Coding Jurnal Komputer Dan Aplikasi, 10(03), 399. https://doi.org/10.26418/coding.v10i03.55398
Nurhadryani, Y., Wulandari, W., & Mastika, M. N. F. (2022). Vehicle Detection Monitoring System using Internet of Things. Jurnal RESTI (Rekayasa Sistem Dan Teknologi Informasi), 6(5), 749–760. https://doi.org/10.29207/resti.v6i5.4082
Nurlaila, N., Paembonan, S., & Suppa, R. (2024). Rancang Pendeteksian Kecepatan Kendaraan Berbasis Arduino. Jurnal Informatika Dan Teknik Elektro Terapan, 12(3). https://doi.org/10.23960/jitet.v12i3.4771
Pranata, R., Akhmad, S., & Febriyansyah, F. (2024). Pengembangan Motor IoT untuk Pemantauan Kecepatan dan Pemeliharaan Melalui Telegram, 9(3), 315–321. https://doi.org/10.30591/jpit.v9i3.6126
Siringoringo, R. M. (2015). Perancangan Dan Implementasi Monitoring Kendaraan Bermotor Berbasis Gps Dan Sms. E-Proceeding of Applied Science, 1(1), 868–875.
Al-Fuqaha, A., Guizani, M., Mohammadi, M., Aledhari, M., & Ayyash, M. (2015). Internet of Things: A Survey on Enabling Technologies, Protocols, and Applications. IEEE Communications Surveys & Tutorials, 17(4), 2347–2376. https://doi.org/10.1109/COMST.2015.2444095
Wicaksono, A., & Prasetyo, E. (2020). Sistem Pemantauan Lokasi Kendaraan Menggunakan GPS dan Google Maps API. Jurnal Teknik ITS, 9(1), A101–A105. https://doi.org/10.12962/j23373539.v9i1.55052
Priyambodo, T. K., & Widodo, A. (2020). Implementasi Internet of Things (IoT) dalam Sistem Monitoring Kendaraan. Jurnal Teknologi dan Sistem Komputer, 8(1), 34–40. https://doi.org/10.14710/jtsiskom.8.1.2020.34-40
Nugroho, A. S., & Haryanto, A. (2019). Penggunaan ESP32 dalam Sistem Pemantauan Suhu dan Lokasi Berbasis IoT. Jurnal RESTI (Rekayasa Sistem dan Teknologi Informasi), 3(1), 123–129. https://doi.org/10.29207/resti.v3i1.1203
Sulistyo, A., & Dewi, N. (2021). Perancangan Sistem Monitoring Suhu Mesin Menggunakan Sensor MAX6675 dan NodeMCU ESP32. Jurnal Informatika dan Komputer, 6(2), 98–104. https://doi.org/10.30865/jurikom.v6i2.2369
Dey, N., Ashour, A. S., & Hassanien, A. E. (2018). Internet of Things and Big Data Analytics for Smart Generation. Springer. https://doi.org/10.1007/978-3-319-76472-0
Hariyanto, D. (2020). Pemanfaatan Modul GSM SIM800L dalam Pengiriman Data Sensor Jarak Jauh. Jurnal Teknologi dan Sistem Komputer, 8(2), 215–220. https://doi.org/10.14710/jtsiskom.8.2.2020.215-220
Yuliana, Y., & Fitriani, I. (2020). Perancangan Sistem Monitoring Daya Menggunakan Sensor INA219 Berbasis IoT. Jurnal Teknologi Informasi dan Ilmu Komputer (JTIIK), 7(3), 540–547. https://doi.org/10.25126/jtiik.2020732006
Article Metrics
Abstract Views : 160 times
PDF (Bahasa Indonesia) Downloaded : 80 times
Refbacks
- There are currently no refbacks.

This work is licensed under a Creative Commons Attribution-ShareAlike 4.0 International License.


.png)


.jpg)



