Acknowledgement
This work was supported by Hue University under the Core Research Program, Grant No. NCM.DHH. 2019.05.
References
- A. Mavrogiorgou et al., Internet of medical things (Iomt): Acquiring and transforming data into HL7 FHIR through 5G network slicing, Emerg. Sci. J. 3 (2019), no. 2, 64-77. https://doi.org/10.28991/esj-2019-01170
- M. Imran et al., Performance analysis of optical burst switching with fast optical switches for data center networks, in Proc. Int. Conf. Transparent Opt. Netw. (Budapest, Hungary), July 2015, pp. 1-4, doi: 10.1109/ICTON.2015.7193596.
- S. J. Ben Yoo, Optical packet switching and optical burst switching: Technologies, systems, and networking issues for the future Internet, in Proc. Int. Conf. Photonics Switch. (Sapporo, Japan), Aug. 2008, pp. 1-2, doi: 10.1109/PS.2008.4804203.
- A. Zalesky, To burst or circuit switch?, IEEE/ACM Trans. Netw. 17 (2009), no. 1, 305-318, doi: 10.1109/TNET.2008.923718.
- R. Lamba and A. Garg, Survey on contention resolution techniques for optical burst switching networks, Int. J. Eng. Res. Appl. 2 (2012), no. 1, 956-961.
- X. Huang, V. M. Vokkarane, and J. P. Jue, Burst cloning: A proactive scheme to reduce data loss in optical burst-switched networks, in Proc. IEEE Int. Conf. Commun. (Seoul, Republic of Korea), May 2005, pp. 1673-1677.
- T. W. Um et al., Priority-based duplicate burst transmission mechanism in optical burst switching networks, ETRI J. 30 (2008), no. 1, 164-166, doi: 10.4218/etrij.08.0207.0118.
- T. Venkatesh et al., A complete framework to support controlled burst retransmission in optical burst switching networks, IEEE J. Sel. Areas Commun. 26 (2008), no. 3, 65-73, doi: 10.1109/JSAC-OCN.2008.029507.
- Q. Zhang et al., TCP over optical burst-switched networks with controlled burst retransmission, Photonic Netw. Commun. 22 (2011), no. 3, 299-312, doi: 10.1007/s11107-011-0329-8.
- W. H. F. Aly, M. Levesque, and H. ElBiaze, AHDR technique for OBS networks, Int. J. Sci. Eng. Res. 2 (2011), no. 10, 1-5.
- M. Thachayani and R. Nakkeeran, Combined probabilistic deflection and retransmission scheme for loss minimization in OBS networks, Opt. Switch. Netw. 18 (2015), no. P1, 51-58, doi: 10.1016/j.osn.2015.03.004.
- S. Riadi and A. Maach, An efficient hybrid burst retransmission and burst cloning scheme over star OBS networks, Electron. Devices 1 (2012), no. 2, 43-54.
- R. Hou et al., A framework of prioritized burst segmentation supporting controlled retransmission in OBS networks, AEUInt. J. Electron. Commun. 68 (2014), no. 1, 44-50, doi: 10.1016/j.aeue.2013.07.010.
- D. V. Vanitha and M. Sabrigiriraj, Analysis of hybrid buffering and retransmission in OBS networks, Sci. World J. 2015 (2015), 1-6, doi: 10.1155/2015/159245.
- D. V. Vanitha, D. Sumitha, and M. Sabrigiriraj, Analysis of combined buffering and retransmission with maintenance activity in OBS networks, in Proc. Int. Conf. Curr. Trends Towards Converging Technol. (Coimbatore, India), Mar. 2018, pp. 1-3, doi: 10.1109/ICCTCT.2018.8550882.
- X. Y. Zhang and K. Zhang, Study on pre-deflection routing in OBS network based on congestion avoidance, Appl. Mech. Mater. 556-562 (2014), 5863-5868, doi: 10.4028/www.scientific.net/AMM.556-562.5863.
- J. Triay, J. Rubio, and C. Cervello, An optical burst switching control plane architecture and its implementation, in Proc. Open Eur. Summer Sch. EUNICE (Stuttgart, Germany), Sept. 2006, pp. 1-7.
- V. V. M. Nhat et al., A mechanism of QoS differentiation based on offset time and adjusted burst length in OBS networks, Turk. J. Elec. Eng. Comp. Sci. 28 (2020), no. 5, 2808-2820, doi: 10.3906/elk-1906-87.
- M. Nandi et al., Best fit void filling algorithm in optical burst switching networks, in Proc. Int. Conf. Emerg. Trends Eng. Technol. (Nagpur, India), Dec. 2009, pp. 609-614, doi: 10.1109/ICETET.2009.46.
- P.-D. Tuan et al., Performance analysis of optical burst switched networks with limited-range wavelength conversion, retransmission and burst segmentation, J. Oper. Res. Soc. Japan 52 (2009), no. 1, 58-74, doi: 10.15807/jorsj.52.58.
- V. V. M. Nhat et al., Network Simultor, Available from: http://www.isi.edu/nsnam/ns/ [last accessed Aug. 2020].