Energy Efficient Waveband Translucent Optical Burst Switching Network

Authors

  • Mohammed J. Sadiq Electrical Engineering Technical College, Middle Technical University, Baghdad, Iraq.
  • Mohammed J. Zaiter Electrical Engineering Technical College, Middle Technical University, Baghdad, Iraq.
  • Raad F. Chisab Technical Institute / Kut, Middle Technical University, Baghdad, Iraq

DOI:

https://doi.org/10.51173/jt.v4i4.776

Keywords:

Optical Burst Switched (OBS), Energy Efficient, Waveband Switching (WS)

Abstract

The fast development of translucent Optical Burst Switching (OBS) technology, which employs multiple wavelengths per fiber, increases the size (i.e., the number of ports) as well as the cost and power consumption of Optic Cross-Connects (OXCs). This paper studies the impact of OBS network parameter settings, where switching is performed at the Waveband Switching (WS) granularity using an end-to-end grouping method to reduce the number of lightpaths and switch ports. The simulation results illustrate that using OBS networks with WS by the suitable parameter settings, namely the Burstification Time (BT) and waveband granularity, offers considerable energy savings in the core network compared to using an OBS network without WS, where overall power consumption is decreased by maximizing BT values and waveband granularity.

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References

F. El-Nahal and N. Hanik, “Technologies for future wavelength division multiplexing passive optical networks,” IET Optoelectron, vol. 14, no. 2, pp. 53–57, January. 2020.

D. K. A.Singh, “an Innovative waveband switching technology reduced the number of optical communication terminals in WDM networks,” Journal of Hunan University(Natural Science)s, vol. 49, no. 03, March. 2022.

W.Jingxin, "Resource Allocation in Multigranular Optical Networks,” George Washington University ProQuest, vol.0, no. 2, pp.1 139, July.2019.

Z. Binkun, “( Waveband Switching and Photon Slot Routing ) Transmission Division Emerging Optical Switching Techniques,” vol. 34, pp. 1–14, September.2018.

C. Q. P. Losada, D.Chiaroni, "Optical Packet Switching and Optical Burst Switching," Springer Handbook of Optical Networks, vol.34, no.4, pp.1-8, September.2020.

R. Poorzare and S. Abedidarabad, “A Brief Review on the Methods that Improve Optical Burst Switching Network Performance,” J Opt Commun, vol. 36, no. 2, pp. 1–6, July.2019.

M. Imran, M. Collier, P. Landais, and K. Katrinis, “Software-defined optical burst switching for HPC and cloud computing data centers,” J Opt Commun Netw, vol. 8, no. 8, pp. 610–620, August.2016.

B. G. Bathula and J. M. H. Elmirghani, “Energy efficient Optical Burst Switched (OBS) networks,” 2009 IEEE Globecom Work Gc Work 2009, vol. 34, no. 2, pp. 1–6, June. 2010.

F. Callegati, W. Cerroni, and G. Di Maio, “Power consumption reduction in OPS with wavelength conversion,” Int Conf Transparent Opt Networks, vol. 20, no.2, pp. 1–5, June .2011.

M. J. Zaiter, S. Yussof, A. Abdelouhahab, C. L. Cheah, and A. Saher, “On the energy consumption in Optical Burst Switching (OBS) networks,” ISCAIE 2012 - 2012 IEEE Symp Comput Appl Ind Electron, vol. 0, no. 4, pp. 233–236, December.2012.

D. K. Kang, W. H. Yang, J. H. Jung, and Y. C. Kim, “Wake transition decision algorithm for energy saving in OBS network with LPI,” 2012 Int Conf Comput Netw Commun ICNC’12, vol. 37, no. 05, pp. 527–531, March .2012.

M. J. Zaiter, S. Yussof, C. L. Cheah, A. Abdelouhahab, and A. I. Salih, “Energy efficient Parallel Optical Burst Switching (POBS) networks,” Res J Appl Sci Eng Technol, vol. 8, no. 2, pp. 253–262, July.2014.

K. Van Hautegem, W. Rogiest, and H. Bruneel, “Improving the energy efficiency of scheduling algorithms for OPS/OBS buffers,” Photonic Netw Commun, vol. 29, no. 2, pp. 183–197, November. 2015.

B. Lakshmanan, S. Ramasamy, and S. Alavandar, “Hybrid approach for a reliable bufferless OBS network with reduced end-to-end delay and burst loss,” Int J Oper Res, vol. 37, no. 2, pp. 220–244, June.2020.

R. Q. Shaddad, A. M. Al-Ssarary, S. A. Al-Mekhlafi, M. zen D. Qaid, and Z. M. Farhan, “Contention Resolution of Optical Burst Switching for Data Center,” 2021 Int Conf Technol Sci Adm ICTSA 2021, vol. 12, no. 2, pp. 0–3, June. 2021.

M. Zeghid et al., “Modified Optical Burst Switching (OBS) Based Edge Node Architecture Using Real-Time Scheduling Techniques,” IEEE Access, vol. 9, no. 4, pp. 167305–167321, December.2021.

P. Khumalo, B. Nleya, and A. Mutsvangwa, “A controllable deflection routing and wavelength assignment algorithm in OBS networks,” J Opt, vol. 48, no. 4, pp. 539–548, November. 2019.

Y. Huang, J. P. Heritage, and B. Mukherjee, “A new node architecture employing waveband-selective switching for optical burst-switched networks,” IEEE Commun Lett, vol. 11, no. 9, pp. 756–758, June. 2007.

F. Parmigiani, R. Slavík, J. Kakande, P. Petropoulos, and D. Richardson, “Optical regeneration,” in All-Optical Signal Processing, vol. 0,no.4, pp. 129–155, January .2015.

S. Peng, K. Hinton, J. Baliga, R. S. Tucker, Z. Li, and A. Xu, “Burst switching for energy efficiency in optical networks,” Opt InfoBase Conf Pap, vol. 0, no. 3, pp. 5–7, June.2010.

J. Baliga, R. Ayre, K. Hinton, and R. S. Tucker, “Photonic switching and the energy bottleneck,” 2007 Photonics Switch PS, vol. 34, no. 4, pp. 125–126, August.2009.

L. Guo, X. Wang, W. Ji, W. Hou, and T. Yang, “A new waveband switching method for reducing the number of ports in wavelength-division-multiplexing optical networks,” Opt Fiber Technol, vol. 15, no. 1, pp. 5–9, June .2009.

Z. Zhu, “Design green and cost-effective translucent optical networks,” Opt InfoBase Conf Pap, vol. 0, no. 2, pp. 4–6, June .2011.

P. P. Merlin Philip, "Performance Evaluation of All-Optical 2R Regenerator Based on Self Phase Modulation," Int J Eng Res Technol, vol. 4, no. 1, pp. 1–4, January. 2015.

J. Woods and H. Stark, “Probability, statistics, and random processes for engineers" Pearson Education Inc, vol. 1746, no.4, pp. 544-611, July. 2012.

Burst Assembly of OBS Edge Node with Waveband

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Published

2022-12-31

How to Cite

Mohammed J. Sadiq, Mohammed J. Zaiter, & Raad F. Chisab. (2022). Energy Efficient Waveband Translucent Optical Burst Switching Network. Journal of Techniques, 4(4), 71–79. https://doi.org/10.51173/jt.v4i4.776

Issue

Section

Engineering

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