System Telemetry for Mobile Devices Using the GPS Neo-6M and DHT11 Modules A Case Study by IMEI Team
Sistem Telemetri Perangkat Bergerak Menggunakan Modul GPS Neo-6M dan DHT11 Studi Kasus oleh Tim IMEI
DOI:
https://doi.org/10.21070/ups.1077Keywords:
Formula One (F1), Shell Eco-Marathon, Kontes Mobil Hemat Enegi (KMHE), Telemetry System, Internet Of Things, Censor DHT11Abstract
Telemetry systems are used during Formula One (F1) and Shell Eco Marathon (SEM) races to monitor car conditions and performance during the race. This telemetry system is designed to monitor the performance of the car in real time by obtaining speed data and steering room temperature. The purpose of making this tool is to be able to strategize during a good and efficient race. This telemetry system consists of sensors installed on the car, such as the U-blox Neo 6m GPS sensor and the DHT 11 sensor. The method used in this research includes several stages, namely telemetry system development, trials and testing, and data analysis. The main result of this research is that it can monitor the performance of electric cars in real-time. The electric car telemetry system can be a very useful tool for users and electric car manufacturers to improve the efficiency and performance of electric cars.
Downloads
References
I. Car, “BAB I,” pp. 1–10, 1993.
B. Losper, B. Groenewald, and V. Balyan,“Remote electrical vehicle communication system,” in 017 Fourth International Conference on Image Information Processing (ICIIP), 2017, pp. 1–4. doi:10.1109/ICIIP.2017.8313735.
M. R. Hammady, F. T. Elektro, and U. Telkom, “Sistem Telemetri Pada Mobil Listrik Inacos Berbasis Iot Universitas Telkom Telemetry System on Inacos Electric Car With Iot Concept Telkom University,” vol. 5, no. 1, pp. 100–106, 2018.
M. Badri, J. T. Mesin, F. Teknik, and U. Riau, “Manufaktur Bodi Kendaraan Shell Eco Marathon ( Sem) Tipe,” vol. 4, no. 2, pp. 1–7, 2017.
A. G. Calderón, G. G. G. Ruiz, and A. C. G. Bohórquez, “GPRS telemetry system for high-efficiency electric competition vehicles,” in 2013 World Electric Vehicle Symposium and Exhibition (EVS27), 2013, pp. 1–7. doi: 10.1109/EVS.2013.6914788.
A. G. Calderón, G. G. G. Ruiz, and A. C. G. Bohórquez, “GPRS telemetry system for high-efficiency electric competition vehicles,” in 2013 World Electric Vehicle Symposium and Exhibition (EVS27), 2013, pp. 1–7. doi: 10.1109/EVS.2013.6914788.
M. Tadjuddin, U. Aulia, and T. Firsa, “Strategi Mengemudi Mobil Listrik Pada Kontes Mobil Hemat Energi ( KMHE ),” pp. 185–190, 2017.
M. Hemat and P. Tinggi, “Rancang bangun bodi mobiltuxuci politeknik tegal,” vol. 3, pp. 37–40, 2014.
F. N. Falah, G. P. Adi, C. Saraswati, H. Prasetyo, Much. Djunaidi, and R. Fitriadi, “Penetapan Spesifikasi Desain Body Composite Untuk Urban Concept Berdasarkan Regulasi Kontes Mobil Hemat Energi 2018 Menggunakan Metode Quality Function Deployment (QFD),” The 11th University Research Colloquium, pp. 183–189, 2020.
N. Arina Hidayati et al., “Analisis aerodinamis pada variasi bentuk ekor desain bodi mobil hemat energi,” Jurnal Energi Dan Manufaktur, vol. 10, no. 2, pp. 66–70, 2018.
A. Wahab, M. Rohman, A. Saepuddin, and M. Sulaiman, “Desain Dan Simulasi Uji Kekuatan Chassis Mobil Sem Jenis Prototype Menggunakan Material Aluminium Alloy 7075,” Jurnal Teknik Mesin Indonesia, vol. 17, no. 1, pp. 78–85, 2022, doi: 10.36289/jtmi.v17i1.297.
V. A. Iriciuc and A. Kotlar, “Sensor Monitoring System for Formula Student Car,” in 2018 IEEE 24th International Symposium for Design and Technology in Electronic Packaging (SIITME), 2018, pp. 206–297. doi: 10.1109/SIITME.2018.8599259.
N. Nikolov, “Research of Automotive Infotainment System and its Design with IoT Connectivity,” in 2022 13th National Conference with International Participation (ELECTRONICA), 2022, pp. 1–4. doi: 10.1109/ELECTRONICA55578.2022.9874420.
B. Losper, B. Groenewald, and V. Balyan, “Remote electrical vehicle communication system,” in 2017 Fourth International Conference on Image Information Processing (ICIIP), 2017, pp. 1–4. doi: 10.1109/ICIIP.2017.8313735.
M. S. Maulana, I. Sulistiyowati, T. Elektro, and U. M. Sidoarjo, “Sistem Telemetri Mobil Listrik IMEI TEAM UMSIDA Berbasis Iot Dan Ublox Gps Neo-6m,” pp. 1–5, 2000.
N.-M. Drogeanu, L.-A. Perişoară, and J.-A. Văduva, “Web Interface for IoT Vehicle Monitoring System,” in 2022 IEEE 28th International Symposium for Design and Technology in Electronic Packaging (SIITME), 2022, pp. 185–190. doi: 10.1109/SIITME56728.2022.9988627.
I. H. Suprobo, A. Yuandari, A. Hartono, H. S. K, H. V. P. D. M, and Y. A. S, “Vol 3, 2021 SISTEM TELEMETRI MOBIL LISTRIK ARUGO,” vol. 3, 2021.
V. Rahatal, P. More, M. Salunke, S. Makeshwar, and R. D. Joshi, “IoT Based Communication System for Autonomous Electric Vehicles,” in 2021 7th International Conference on Signal Processing and Communication (ICSC), 2021, pp. 66–72. doi: 10.1109/ICSC53193.2021.9673164.
E. M. Antonyuk, I. E. Varshavskiy, I. S. Kolpakova, A. A. Minina, and P. E. Antonyuk, “Telemetry system with adaptive commutation,” in 2016 IEEE NW Russia Young Researchers in Electrical and Electronic Engineering Conference (EIConRusNW), 2016, pp. 389–391. doi: 10.1109/EIConRusNW.2016.7448202.
M. A. Rafique, I. Alam, M. Tayyab, and A. Mustafa, “A cost and resource efficient telemetry host station design using FPGA,” in 2018 15th International Bhurban Conference on Applied Sciences and Technology (IBCAST), 2018, pp. 799–804. doi: 10.1109/IBCAST.2018.8312315.
S. Taghizadeh, P. Jamborsalamati, M. J. Hossain, and J. Lu, “Design and Implementation of an Advanced Vehicle-to-Vehicle (V2V) Power Transfer Operation Using Communications,” in 2018 IEEE International Conference on Environment and Electrical Engineering and 2018 IEEE Industrial and Commercial Power Systems Europe (EEEIC / I&CPS Europe), 2018, pp. 1–6. doi: 10.1109/EEEIC.2018.8494480.
G. Hristov, P. Zahariev, S. Borisov, and D. Kyuchukova, “An educational system for real-time monitoring and evaluation of the parameters of electric vehicles,” in 2016 15th International Conference on Information Technology Based Higher Education and Training (ITHET), 2016, pp. 1–5. doi: 10.1109/ITHET.2016.7760757.
K. Z. Tang, S. Tang, N. P. Kusumadi, and S. H. Chuan, “Development of a remote telemetry and diagnostic system for electric vehicles and electric vehicle supply equipment,” in 2013 10th IEEE International Conference on Control and Automation (ICCA), 2013, pp. 609–613. doi: 10.1109/ICCA.2013.6565203.
F. Firdaus and I. Ismail, “Komparasi Akurasi Global Posistion System (GPS) Receiver U-blox Neo-6M dan U-blox Neo-M8N pada Navigasi Quadcopter,” Elektron : Jurnal Ilmiah, vol. 12, no. 1, pp. 12–15, 2020, doi: 10.30630/eji.12.1.137.
Siswanto, Firdiansyah, M.anif, and basuki hari Prasetyo, “Kendali dan Monitoring Ruang Server dengan Sensor Suhu DHT-11 Gas MQ-2 serta Notifikasi SMS,” Sistem Informasi dan Teknologi Informasi, pp. 122–130, 2019.
I. Sulistiyowati, M. I. Muhyiddin, D. Elektro, and F. Sains, “Robot Penyemprotan Disinfektan untuk Mencegah Penularan Virus Covid-19 Berbasis Internet of Things ( IoT ),” vol. 5, no. 2, pp. 61–67, 2021.
Downloads
Additional Files
Posted
License
Copyright (c) 2023 UMSIDA Preprints Server
This work is licensed under a Creative Commons Attribution 4.0 International License.