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http://dx.doi.org/10.9717/kmms.2022.25.1.061

A Method for the Selection of Underwater Multimedia Routing Protocol Stack based on the Similarity Model  

Shin, DongHyun (Department of Computer Science & Engineering, Gangneung-Wonju National University)
Kim, Changhwa (Department of Computer Science & Engineering, Gangneung-Wonju National University)
Publication Information
Abstract
When communication such as light, radio wave, or magnetic field is used underwater, the communication distance is very short, so sound waves are mainly used. However, by combining the strengths of each medium and communicating, stable communication may be possible. Underwater multi-media communication requires a protocol stack that supports it, which is very complex. To this end, this paper proposes a standard protocol stack and modeling technique to enable easy protocol stack modeling for the purpose. In fact, in this paper, a random model was created and analyzed through the proposal of modeling elements and similarity measurement methods, and as a result, it was analyzed that it was very helpful in creating a new model based on a standard model.
Keywords
Underwater Protocol Stack Modeling; Underwater Multi-media Communication; Complex Communication; Underwater Multi-media Protocol Stack;
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1 D.H. Shin, S.J. Park, and C.H. Kim, "Underwater Acoustic Communication Technology and Trends", Journal of Electronics Engineering, Vol 45, No 5, pp.32-48, 2018.
2 D.S. You, D.H. Shin, S.S. Lim, S.H. Jeon, and C.H. KIM, "Implementation of a Fragmentation Method for Flow Control in Underwater Multi-media Communication", Journal of Korea Multimedia Society, Vol. 23, No. 7, pp. 819-829, 2020.   DOI
3 S.H. Yeom, J.I. Namgung, S.Y. Shin, and S.H. Park, "Research of Network Communication System Supporting Human Advanced Underwater Activities", Proceedings of the Institute of Electronics and Information Engineers, pp. 376-379, 2018.
4 D.R. K M, S.-H. Yum, E. Ko, S.-Y. Shin, J.-I. Namgung, S.-H. Park, "Multi-Media and Multi-Band Based Adaptation Layer Techniques for Underwater Sensor Networks", Applied Sciences, Vol. 9, No. 15, pp. 1-24, 2019.
5 TTAK.KO-06.0528, "Protocol Layer Models and Core Requirements for Multi-Medium Routing in Underwater Multi-Media Wireless Communication Networks", TTA Standard, 2020.
6 H.G. Kim and H.S. Cho, "A Sensor-Node Searching Scheme for Initial Cell Configuration in Underwater Cellular Network", Journal of the Korean institute of Communication Sciences, Vol. 44, No. 1, pp 68-71, 2019.   DOI
7 D.S. You and C.H. Kim, "Approaches to the Design and Modularization for Implementing Multimedia-based Underwater Communication to Use Integrated MAC", Journal of Korea Multimedia Society, Vol. 22, No. 11, pp. 1259-1268, 2019.   DOI
8 D.S. You, D.H. Shin, S.S. Lim, S.H. Jeon, and C.H. Kim, "Implementation of a Fragmentation Method for Flow Control in Underwater Multi-Media Communication", Journal of Korea Multimedia Society, Vol. 23, No. 7, pp. 819-829, 2020.   DOI
9 K.Y. Kim, J.H. Kim. S.Y. Kim, C.M. Hyuk, I.T. Ho, and K.H. Lim, "Analysis of Underwater Channel Characteristics at South Sea of Korea", Proceedings of the Korean Institute of Communication Sciences Conference, pp. 1222-1223, 2019.