Development of internet of things-based petroleum pipeline topology leak monitoring and detection system using sensors
Keywords:
Internet of Things (IoT), Sensors, Petroleum, Pipeline topology, MonitoringAbstract
Transportation of crude oil by pipelines is the safest mode of oil transportation. In Nigeria, over 90\% of oil transported by federally regulated pipelines arrives safely every year. The flow starts from oil fields to flow stations to refineries and export tankers and finally, from refineries to depots. Notably, the transportation of oil by pipeline suffers challenges. The challenges range from natural disasters to attacks and activities carried out by vandals. These activities pose a serious threat to Flora and Fauna and have caused devastating effects on the environment, with remarkable destruction of vegetation cover, water bodies, and arable land. In this study, an Internet of Things (IoT)-Based Petroleum Pipeline Topology Leak Detection and Monitoring System (IoT-BPTLDMS) that is capable of monitoring, detecting, and reporting pipeline topology leakage and reports same to the control room before it graduates to spillage has been developed. This was done by strategically mounting pressure-change detecting sensors along the pipelines which are capable of detecting leakages through changes in fluid pressure and results transmitted with the aid of a Long-Range Wireless Area Network (LoRaWAN) module. The transmitted data captures the date, time, event, and geo-location of the leak site. This data is received in a computer and an Android phone. A prototype was used to study the setup's workings. The prototype controller was programmed using C++ with the Arduino Integrated Development Environment (IDE). The Android Application was assembled with Basic4Andriod. The captured result shows consistency with the area of leakage against the geo-location reported. This shows that this method would be effective in checking and detecting petroleum pipeline leakage, and as such, can solve the problem of quick response to pipeline vandalisation and oil spillage in Nigeria or generally.
Published
How to Cite
Issue
Section
Copyright (c) 2025 Paul Tawo Bukie, Idongesit E. Eteng, Eyo E. Essien (Author)

This work is licensed under a Creative Commons Attribution 4.0 International License.
How to Cite
Similar Articles
- Paavithashnee Ravi Kumar, Majid Khan Majahar Ali, Olayemi Joshua Ibidoja, Identifying heterogeneity for increasing the prediction accuracy of machine learning models , Journal of the Nigerian Society of Physical Sciences: Volume 6, Issue 3, August 2024
- Gabriel James, Anietie Ekong, Etimbuk Abraham, Enobong Oduobuk, Peace Okafor, Analysis of support vector machine and random forest models for predicting the scalability of a broadband network , Journal of the Nigerian Society of Physical Sciences: Volume 6, Issue 3, August 2024
- Raed Hatamleh, Diana Amin Mohammad Mahmoud, Haitham Qawaqneh, Hind Y. Saleh, Alaa M. Abd El-latif, Eman Almuhur, Aqeedat Hussain, Arif Mehmood, Cris L. Armada, Complex triple-valued neutrosophic soft sets and their topological framework with AI-driven signal-template analysis , Journal of the Nigerian Society of Physical Sciences: Volume 8, Issue 3, August 2026
- Nour Hamad Abu Afouna, Majid Khan Majahar Ali, Optimizing precision farming: enhancing machine learning efficiency with robust regression techniques in high-dimensional data , Journal of the Nigerian Society of Physical Sciences: Volume 7, Issue 1, February 2025
- U. E. Edeke, U. N. Bassey, Some properties of convolution and spherical analysis on the Euclidean motion group , Journal of the Nigerian Society of Physical Sciences: Volume 7, Issue 2, May 2025
- E. Udensi, R. B. Salau, S. O. Salihu, M. M. Ndamitso, M. T. Bisiriyu, Chemometric authentication of branded and crude spices using integrated GC–MS fingerprints and elemental profiling , Journal of the Nigerian Society of Physical Sciences: Volume 8, Issue 3, August 2026
- O. F. Odubanjo, O. A. Falaiye, M. M. Orosun, M. Sanni, Investigation of particulate matter Air Quality Index (AQI) and risk assessment in some locations in Nigeria , Journal of the Nigerian Society of Physical Sciences: Volume 6, Issue 4, November 2024
- Duke Okoro, Oghenenyerhovwo E. Ididama, Godswill O. Tesi, Jude C. Ossai, Contamination levels, occurrence pattern and associated risk of organophosphate pesticide residues in spices and herbs sold in southern Nigeria , Journal of the Nigerian Society of Physical Sciences: Volume 8, Issue 1, February 2026
- E. P. Onokare, L. O. Odokuma, F. D. Sikoki, B. M. Nziwu, P. O. Iniaghe, J. C. Ossai, Physicochemical Characteristics and Toxicity Studies of Crude Oil, Dispersant and Crude Oil-Dispersant Test Media to Marine Organisms , Journal of the Nigerian Society of Physical Sciences: Volume 4, Issue 1, February 2022
- Chinnarao Menda, Ch. Ramakrishna, V D N Kumar Abbaraju, Analysis of industrial solid waste for secure and eco-friendly disposal by incineration practices , Journal of the Nigerian Society of Physical Sciences: Volume 7, Issue 3, August 2025
You may also start an advanced similarity search for this article.
Most read articles by the same author(s)
- Osowomuabe Njama-Abang, Denis U. Ashishie, Paul T. Bukie, Addressing class imbalance in lassa fever epidemic data, using machine learning: a case study with SMOTE and random forest , Journal of the Nigerian Society of Physical Sciences: Volume 7, Issue 3, August 2025

