Abstract:
Subscribers in underwater locations access cloud content aboard terrestrial data centres at high latency. However, it is important to access cloud content at low latency....Show MoreMetadata
Abstract:
Subscribers in underwater locations access cloud content aboard terrestrial data centres at high latency. However, it is important to access cloud content at low latency. This necessitates the design of solutions enabling low latency cloud content access for underwater subscribers. This paper proposes network architecture for the underwater habitat subscribers. It uses underwater data centre due to its low latency computing platform access. Underwater data centres are considered because they are closer to subscribers aboard underwater habitats. They also have a low cooling cost since they benefit from using the ocean's cold water. The network uses autonomous underwater vehicles as data transfer nodes between underwater habitat subscribers and computing platforms. Evaluation shows that the proposed network architecture reduces latency by an average of at least 26.8% and up to 84.6%.
Published in: 2021 International Conference on Artificial Intelligence, Big Data, Computing and Data Communication Systems (icABCD)
Date of Conference: 05-06 August 2021
Date Added to IEEE Xplore: 30 August 2021
ISBN Information:
Funding Agency:
References is not available for this document.
Select All
1.
C. Lin and H. Khazaei, "Modelling andOptimization of Performance and Cost of Serverless Applications", IEEE Transactions on Paralled and Distributed Systems, vol. 32, no. 3, pp. 615-632, March 2021.
2.
B. Cutler, S. Fowers, J. Kramer and E. Peterson, "Dunking the data center", IEEE Spectrum, vol. 3, pp. 26-31, 2017.
3.
A. A. Periola, O. A. Osanaiye and A. T. Olusesi, "Future cloud: spherical processors for realizing low - cost underwater data centers", The Journal of SuperComputing, 2021.
4.
C. Cardia, P. Gjanci, C. Petrolli, G. Satruni, D. Spaccini and D. Tomaselli, "The Internet of Underwater Things: From Nemo to underwater Whatsapp", Mobihoc ‘19: Proceedings of the Twentieth ACM International Symposium on Mobile Ad Hoc Networking and Computing, pp. 409-410, July 2019.
5.
N. Goyal, M. Dave and A. K. Verma, "Protocol Stack of Underwater Wireless Sensor Network: Classical Approaches and New Trends", Wireless Personal Communications, vol. 104, no. 2019, pp. 995-1022.
6.
C. Spiering, "History of high energy neutrino astronomy", International Conference on History of the Neutrino: 1930-2018, September 5-7, 2018, ISBN 9791096879090.
7.
M. Sanguineti, "ANTARES and KM3Net: The Latest Results of the Neutrino Telescopes in the Meditterranean", Universe, vol. 5, no. 65, pp. 1-9, 2019.
8.
J. Roach, Microsofts undersea datacenter helps the hunt for a COVID-19 vaccine, [online] Available: https://news.microsoft.com/innovation-stories/project-natick-covid-19/.
9.
C. Henderson, Immersing Architecture: The Futures of Undersea Development, 2009.
10.
T. C. Endsley, T. J. Steiner, F. E. Meyen and K. R. Duda, "Mapping CO2 Concentrations Within A Spaceflight Analog Environment", International Conference on Environmental Systems ICES-2020-51.
11.
H. Lu, D. Wang, Y. Li, J. Li, X. Li, H. Kim, et al., "CONet: A Cognitive Ocean Network", IEEE Wireless Communications, vol. 26, no. 3, pp. 90-96, June 2019.
12.
Y. Li, S. Takahashi and S. Serikawa, "Cognitive Ocean of Things: A Comprehensive review and future trends", Wireless Networks, 2019.
13.
S. Jiang, "Marine Internet for Internetworking in Ocean: A Tutorial", future internet mdpi, vol. 11, no. 146, 2019.
14.
M. Henke, "Proposal for a manned underwater habitat program", International Journal of Environment and Geoinformatics, vol. 8, no. 1, pp. 110-112, 2021.
15.
C. Henderson, Immersing Architecture: The Futures of Undersea Development, May 2009.
16.
A. Beyman, Future Underwater Habitat Showcase: Project Hydronautm, [online] Available: https://medium.com/predict/future-underwater-habitat-showcase-project-hydronaut-7dffbb4df401.
17.
L. Rowinski, "Living and Working Beneath The Sea - Next Approach", Polish Maritime Research, vol. S1, no. 93, pp. 195-202, 2017.
18.
Z. Bujniewicz, "The Creation and Perception of Underwater Built Environment or Architecture", 2019 IOP Conference Ser.: Mater. Sci. Eng, vol. 471, no. 072012, pp. 1-6.