Designing a Real-Time Fuel Consumption Monitoring Dashboard for Ships

Main Article Content

Authors

    Andre Sahulata( 1 ) Aditiya Hermawan( 2 )

    (1) Buddhi Dharma University | Indonesia
    (2) Buddhi Dharma University | Indonesia

Abstract

Fuel usage on ships is a crucial aspect of maritime operations, affecting cost efficiency and sustainability. A calculation carried out by the operational team is required in order to obtain information about the ship's fuel usage. However, the method of calculating fuel usage that is still manual by sounding is still prone to calculation errors and inefficient. Therefore, a system is needed that can assist the operational team in calculating and obtaining fuel usage data quickly and efficiently. This research aims to design a dashboard monitoring system that can monitor ship fuel usage in real-time. Real-time monitoring is important for quick identification of inefficiencies, ensuring safety, and supporting timely decision making. This system can assist the operational team in obtaining data and information on fuel usage more quickly and accurately. The methodology used in this research includes analyzing system requirements, designing system architecture, and implementing dashboard monitoring software. The result of this research is a dashboard system that is able to provide real-time information about fuel usage, making it easier for the operational team to monitor and make decisions. With this system, the efficiency of fuel usage can be increased and the pros of fuel usage can be improved.

Downloads

Download data is not yet available.

Article Details

How to Cite
[1]
Andre Sahulata and Aditiya Hermawan, “Designing a Real-Time Fuel Consumption Monitoring Dashboard for Ships”, rubin, vol. 3, no. 2, pp. 91–105, Jun. 2025.
Section
Articles

References

Abdi, N. F., & Nursari, S. R. C. (2022). Pengujian black box pada Website dengan Metode Robustness Testing (Studi kasus: Eiger Adventure). Journal of Informatics and Advanced Computing (JIAC), 3(2), 93–96.

Almuzani, N., Wahyudi, B., & Fachruddin, I. (2020). Analisis Konsumsi Bahan Bakar Kapal Niaga Berdasarkan American Society for Testing Materials the Institute of Petroleum (ASTM-IP). Dinamika Bahari, 1(1), 21–26. https://doi.org/10.46484/db.v1i1.181

Aminullah, R., Suprayogi, A., & Sukmono, A. (2020). Aplikasi Pgrouting untuk Penentuan Rute Alternatif Menuju Wisata Batik di Kota Pekalongan Berbasis Webgis. Jurnal Geodesi Undip, 7(1), 109–119.

Anwar, Z., Putra, A., Adek, R. T., Al, H., & Aidilof, K. (2025). Design and Implementation of an RFID-Based Automatic Doorstop System with Website and Telegram Bot Integration. Tech-E, 8(2), 125–139. https://doi.org/10.31253/te.v8i2.3447

Arhandi, P. P., Arief, S. N., & Firdausi, A. T. (2022). Pengembangan Website Pendukung Mastery Based Learning Untuk Pembelajaran Mahasiswa. Jurnal Informatika Polinema, 9(1), 51–58. https://doi.org/10.33795/jip.v9i1.966

Basri, A., & Gunawan, A. H. (2021). Development of Information System at Network Operation Center (NOC) CORRESPONDENCE. Tech-E, 4(2), 36–42.

Chen, Y.-J., & Chien, C.-H. (2015). Fuel Consumption System. Journal of Computer and Communications, 03(05), 153–158. https://doi.org/10.4236/jcc.2015.35019

Darmatasia, D., Masyhur, Z., & Syahyadi, A. I. (2021). An Automatic Environment Monitoring System Using a MobileNet Transfer Learning. Tech-E, 5(1), 68–74. https://doi.org/10.31253/te.v5i1.669

Hapsari, A. W., Prastowo, H., & Pitana, T. (2021). Real-Time Fuel Consumption Monitoring System Integrated With Internet Of Things (IOT). Kapal: Jurnal Ilmu Pengetahuan Dan Teknologi Kelautan, 18(2), 88–100. https://doi.org/10.14710/kapal.v18i2.37180

Ismail, H. A., & Kartika, E. (2019). Peran Kemaritiman Indonesia Di Mata Dunia. Jurnal Sains Dan Teknologi Maritim, 20(1), 83–89. https://doi.org/10.33556/jstm.v20i1.222

Kusuma, E. D., Tarunay, O. I., Lunardi, L., & Andika. (2023). Prototipe Sistem Otomasi Smart Office dengan Menggunakan Lock Door, Motion Sensor, dan LCD Berbasis Arduino UNO. Rubinstein: Jurnal Multidisiplin, 1(2), 73–82. https://jurnal.ubd.ac.id/index.php/rubin/article/view/2094

Kusuma, L. W., Setiawan, C. W., Saputra, W., & Natalya, M. (2023). Prototipe Tempat Sampah Pintar dengan Menggunakan MP3 dan Sensor Ultrasonik untuk Menjaga Kebersihan Lingkungan Hidup. Rubinstein: Jurnal Multidisiplin, 1(2).

Murti, S. K., Informatika, J., Industri, T., Sujarwo Badan, A., & Informasi, S. (2021). Membangun Antarmuka Pengguna Menggunakan ReactJs untuk Modul Manajemen Pengguna. Journal Portal Universitas Islam Indonesia, 2(2), 1–6.

https://journal.uii.ac.id/AUTOMATA/article/view/19443

Nugraha, I. M. A., Idrus, M. A., Luthfiani, F., & Malelak, F. Y. (2022). Fuel Consumption Analysis on the Putra Makmur 86 Vessel. Jurnal Megaptera, 1(1), 1. https://doi.org/10.15578/jmtr.v1i1.11505

Rismanto, R., Arhandi, P. P., & Prasetyo, A. (2016). Rancang Bangun Aplikasi Ujian Online Real Time Dengan Menggunakan Aristektur Mean. Jurnal Teknologi Informasi. https://doi.org/10.36382/jti-tki.v7i2.225

Soori, M., Arezoo, B., & Dastres, R. (2023). Internet of things for smart factories in industry 4.0, a review. Internet of Things and Cyber-Physical Systems, 3(March), 192–204. https://doi.org/10.1016/j.iotcps.2023.04.006

Sulistyorini, T., Sova, E., & Ramadhan, R. (2022). Pemantauan Kasus Penyebaran Covid-19 Berbasis Website Menggunakan Framework React Js Dan Api. Jurnal Ilmiah Multidisiplin, 1(04), 01–13. https://doi.org/10.56127/jukim.v1i04.137

Uyanik, T., Kalenderli, O., & Arslanoglu, Y. (2019). Ship Fuel Consumption Prediction with Machine Learning. 4 Th International Mediterranean Science and Engineering Congress, May 2020.

Ye, Z., Wei, Y., Yang, S., Li, P., Yang, F., Yang, B., & Wang, L. (2024). IoT-enhanced smart road infrastructure systems for comprehensive real-time monitoring. Internet of Things and Cyber-Physical Systems, 4(February), 235–249. https://doi.org/10.1016/j.iotcps.2024.01.002

Yin, Q., Ding, Z., Ding, K., & Liu, G. (2017). Design of a real-time ship fuel consumption monitoring system with self-checking function. 2017 4th International Conference on Transportation Information and Safety, ICTIS 2017 - Proceedings, 1178, 735–738. https://doi.org/10.1109/ICTIS.2017.8047849


Abstract views: 444 / PDF downloads: 552