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2017 Vol.36, Issue 3 Preview Page
31 May 2017. pp. 211-217
Abstract
References
1
K. Chen, M. Ma, E. Cheng, F. Yuan, and W. Su, “A survey on MAC protocols for underwater wireless sensor networks,” IEEE Commun. Surveys Tuts. 16, 1433-1447 (2014).
2
E. M. Sozer, M. Stojanovic, and J. G. Proakis, “Underwater acoustic networks,” IEEE J. Ocean. Eng. 25, 72-83 (2000).
3
G. Han, J. Jiang, N. Bao, L. Wan, and M. Guizani, “Routing protocols for underwater wireless sensor networks,” IEEE Commun. Mag. 53, 72-78 (2015).
4
G. Bianchi, “Performance analysis of the IEEE 802.11 distributed coordination function,” IEEE J. Sel. Areas Commun. 18, 535-547 (2000).
5
H. Y. Hwang, S. J. Kim, D. K. Sung, and N.-O. Song, “Performance analysis of IEEE 802.11e EDCA with a virtual collision handler,” IEEE Trans. Veh. Technol. 57, 1293-1297 (2008).
6
H. Y. Hwang, S. J. Kim, B.-S. Kim, D. K. Sung, S. Park, and Y.-U. Chung, “Modeling and analysis of wireless LANs with a backoff freezing mechanism,” Information-An International Interdisciplinary Journal. 15, 1081-1094 (2012).
7
M. Molins and M. Stojanovic, “Slotted FAMA: A MAC protocol for underwater acoustic networks,” in Proc. MTS/IEEE OCEANS. 1-7 (2006).
8
N. Chirdchoo, W. -S. Soh, and K. C. Chua, “MACA-MN: A MACA-based MAC protocol for underwater acoustic networks with packet train for multiple neighbors,” in Proc. IEEE VTC Spring. 46-50 (2008).
9
H. -H. Ng, W. -S. Soh, and M. Motani, “ROPA: A MAC protocol for underwater acoustic networks with reverse opportunistic packet appending,” in Proc. IEEE WCNC. 1-6 (2010).
10
S. Han, Y. Noh, U. Lee, and M. Gerla, “M-FAMA: A multi-session MAC protocol for reliable underwater acoustic streams,” in Proc. IEEE INFOCOM. 665-673 (2013).
11
Y. Noh, U. Lee, S. Han, P. Wang, D. Torres, J. Kim, and M. Gerla, “DOTS: A propagation delay-aware opportunistic MAC protocol for mobile underwater networks,” IEEE Trans. Mobile Comput. 13, 766-782, (2014).
12
P. Mandal and S. De, “New reservation multiaccess protocols for underwater wireless ad hoc sensor networks,” IEEE J. Ocean. Eng. 40, 277-291 (2015).
13
G. Qiao, S. Liu, Z. Sun, and F. Zhou, “Full-duplex, multi-user and parameter reconfigurable underwater acoustic communication modem,” in Proc. MTS/IEEE Oceans. 1-8 (2013).
14
C. Li, Y. Xu, Q. Wang, B. Diao, Z. An, Z. Chen, and Z. Luo, “FDCA: A full-duplex collision avoidance MAC protocol for underwater acoustic networks,” IEEE Sensors J. 16, 4638-4647 (2016).
15
H. -H. Ng, W. -S. Soh, and M. Motani, “Saturation throughput analysis of the slotted BiC-MAC protocol for underwater acoustic networks,” IEEE Trans. Wireless Commun. 14, 3948-3960 (2015).
16
H. Y. Hwang and H. S. Cho, “Throughput and delay analysis of an underwater CSMA/CA protocol with Multi-RTS and Multi-DATA receptions,” Int. J. Distrib. Sens. N. 1-9 (2016).
17
B. H. Jung, S. J. Kim, H. Jin, H. Y. Hwang, J. W. Chong, and D. K. Sung, “Performance improvement of error-prone multi-rate WLANs through adjustment of access/frame parameters,” in Proc. IEEE ICC. 1-6 (2009).
Information
  • Publisher :The Acoustical Society of Korea
  • Publisher(Ko) :한국음향학회
  • Journal Title :The Journal of the Acoustical Society of Korea
  • Journal Title(Ko) :한국음향학회지
  • Volume : 36
  • No :3
  • Pages :211-217
  • Received Date : 2017-02-21
  • Accepted Date : 2017-05-30