Investigation and Implementation of IoT Based Oil & Gas Pipeline Monitoring System
Abstract
Wireless Sensor Networks (WSNs) involve top potential technologies that will dramatically change the way of human living and working. Many scientific, industrial and environmental applications require real time information related to physical events like pressure, temperature or humidity. In the past the only way to transfer the sensed data to control center was through cumbersome and costly wires. But recent advancement in wireless networking enables WSNs to communicate the sensed real time event data wirelessly. WSNs have capabilities of sensing, processing and communicating which make them most suitable for monitoring different on and gas industries upstream, midstream and downstream operations which help to increase production, decrease the accidents, maintenance cost and malfunctioning.
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I. F. AkyiIdiz, W. Su, Y. Sankarasubramaniam, and E. Cayirci, “WireIessSensor Networks: A Survey,” International Journal of Computer and Telecomm. Networking, vol. 38, no.4, pp. 393-422, 2002.
W. Z. Khan, Y. Xiang, M. Y. Aalsalem and Q. Arshad, “Mobile phone sensing systems: a survey,” IEEE Communications Surveys & Tutorials, vol. 15, n. 1, pp. 402-427, 2013.
A. Boukerche, W. N. Pazzia and R. B. Araujo, “FauIt-tolerant wireless sensor network routing protocols for the supervision of contextaware physical environments,” Journal of Parallel and Distributed Computing, vol. 66, pp. 586-599, 2006.
O. Korostynska, R. Blakey, A. Mason, A. AI-Shamma'a, “Novel method for vegetable oil type verification based on real-time microwave sensing,” Sensors And Actuators A: Physical, vol. 202, pp. 211-216, Nov. 2013.
Roshanimrr, Semiconductor Wireless Sensor Internet of Things (IoT): Market Shares, March, 03, 2016. [Online] Available: https: //www.yumpu.com/en/document/view/55267999/semicon ductor-wireless-sensor-internet-of-things-iot-market-shares-strategies-and-forecasts-worldwide-2014-to-2020, [Accessed: Nov. 12, 2022].
A. Adejo, A. Onumanyi, A. J. Any S. O. Oyewobi, “Oil and Gas Process Monitoring Throughwireless Sensor Networks: A Survey,” Ozean Journal of Applied Science, vol. 6, no. 2, 2013.
S. Savazzi, S. Guardiano and U. Spagnolini, “Sensor network modeling and deployment challenges in oil and gas refinery plants,” International Journal of Distributed Sensor Networks, 2013.
B. E. McAdarns, “Wireless Sensor Networks Applications in Oil & Gas, AN-I 105-001, ENTELEC,” Conference & Expo, April 28-28, 2016, Houston, TX, USA. [Online]. Available: http: //www.automation.com/pdCarticles/oleumtech/AN_Wireless_Sensoc-Networks_Appli cations_in_Oil_Gas.pdf. [Accessed: Nov. 12, 2022].
M. R. Akhondi, A. Talevski, S. Carlsen and S. Petersen, “The role of wireless sensor networks (WSN s) in industrial oil and gas condition monitoring,” IEEE DEST 2010, pp. 618-623, 2010.
H. W. Park, H.W et al., “Time reversal active sensing for health monitoring of a composite plate,” Journal of Sound and Vibration, vol. 302, no. 1, pp. 50-66, 2007.
M. Morovvati, B. Mollaei-Dariani and M. Asadian-Ardakani, “A theoretical, numerical, and experimental investigation of plastic wrinkling of circular two-layer sheet metal in the deep drawing,” Journal of Materials Processing Technology, vol.210, no. 13, pp. 1738-1747, 2010.
D. N. Sinha, “Acoustic sensor for pipeline monitoring,” Gas Technology Management Division Strategic Center for Natural Gas and Oil National Energy Technology Laboratory, 2005.
A. J. Al-Ghamdi, A. Abdullah, A. M. Khan and A. Daraiseh, “Improving Safety in Oil and Gas Pipelines and Offshore Project Using Wireless Sensors Networks,” in Pipeline Technology Conference 2010, 2010.
A. C. Azubogu, V. E. Idigo, S. U. Nnebe, O. S. Oguejiofor and E. Simon, “Wireless Sensor Networks for Long Distance Pipeline Monitoring,” in Proceedings of World Academy of Science, Engineering and Technology, pp. 86, 2013.
P. Kenneth, Green and T. Jackson, “Safety in the Transportation of Oil and Gas: Pipelines or Rail,” Fraser Research Bulletin, pp. 1 - 14, August 2015.
L. Boaz, S. Kaijage and R. Sinde, “Wireless Sensor Node for Gas Pipeline Leak Detection and Location,” International Journal of Computer Applications, vol. 100, pp. 29-33, 2014.
F. C. Obodoeze, F. E. Ozioko, C. N. Mba, F. A. Okoye and S. C. Asogwa, “Wireless sensor networks (wsns) in industrial automation: Case study of Nigeria oil and gas industry," in International Journal of Engineering Research and Technology, 2013.
M. R. Akhondi, A. Talevski, S. Carlsen and S. Petersen, “The role of wireless sensor networks (WSNs) in industrial oil and gas condition monitoring,” in Digital Ecosystems and Technologies (DEST), 2010 4th IEEE International Conference, pp. 618-623, 2010.
S. K. Subramaniam, S. M. Khan, R. Nilavalan and W. Balachandran, “Network Performance Optimization Using Odd and Even Routing Algorithm for pipeline network,” in 8th Computer Science & Electronic Engineering Conference, pp. 118-123, 28 - 30 Sept. 2016.
G. Owojaiye and Y. Sun, “Focal design issues affecting the deployment of wireless sensor networks for pipeline monitoring,” Ad Hoc Networks, vol. 11, pp. 1237-1253, 2013.
Y. C. Rao, S. Rani and P. Lavanya, “Monitoring and protection of oil and gas condition in industrial using wireless sensor networks,” Int. J. Electron. Commun. Comput.Technol, vol. 2, pp. 213-218, 2012.
Lifang and Liyuan. “The Monitoring and Controlling Real-time Computer System of Petroleum Production Data,” Journal of Information Technology, vol 11, pp. 61-66, 2002.
I. Stoianov, L. Nachman, and S. Madden, “PIPENET: A Wireless Sensor Network for Pipeline Monitoring,” [C] Proceedings of the 2007 IPSN, April 25-27, 2007, Cambridge, Massachusetts, U.S.A.
Y. Gao, M. J. Brennan, P. F. Joseph, J. M. Muggleton and O. Hunaidi, “A model of the correlation function of leak noise in buried plastic pipes.” Journal of Sound and Vibration, vol 277, pp. 133 −148, 2004.
Z. Liqun, “Latest Development of Corrosion Monitoring Techniques in Petrochemical Industry,” Petrochemical Corrosion and Protection, vol. 22. No. 1, pp. 11-14, 2002.
Z. Ru, D. Weifeng, “Detection of alkaline corrosion in 304 stainless steel weld zone by electrochemical noise,” Journal of Chemical Industry and Engineering (China), vol. 59. No.5, pp. 1216-1222, 2008.
B. Renliu, D. Zehua, “Study on principle of electrical resistance probe based on-temperature compensation for corrosion monitoring,” Corrosion Science and Protection Technology, vol. 19, no. 5, pp. 338-341, 2007.
D. Bo, Z. Jing, Z. Yan, “Ultrasonic in-line inspection of pipeline corrosion based on support vector machine,” Journal of Chemical Industry and Engineering (China), vol. 59, no. 7, pp. 1812-1817, 2008.
O. Hunaidi and W. T. Chu, “Acoustical characteristics of leak signals in plastic water distribution pipes,” Applied Acoustics, vol. 58, no. 3, pp. 235-254, 1999.