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Implementation of Extra Efficient Bandwidth Utilization Dynamic Bandwidth Allocation Algorithm to Support Differentiated Service Classes in XGPON

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Abstract

The Dynamic Bandwidth Allocation (DBA) algorithm is required for efficient bandwidth utilization in XG-PON. The majority of existing DBA algorithms do not make use of the unused bandwidth of a queue with other service classes queue. In the update operation, the efficient bandwidth utilization (EBU) method employs a Borrow Refund (BR) method to utilize unused bandwidth between traffic class queues. This paper presents an extra efficient bandwidth utilization (EEBU) algorithm, which overcomes the limitations mentioned above with proper polling and scheduling mechanism. The theoretical and simulation results show that EEBU improvements for T-CONT 2 delay are 1% and 10%, and for T-CONT 3 delay are 8% and 22%, and for T-CONT 4 delay by 6% and 4.5% compared to the EBU and Giga PON access network (GIANT) respectively.

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References

  1. Effenberger, F., Cleary, D., Haran, O., Kramer, G., Li, R. D., Oron, M., & Pfeiffer, T. (2007). An introduction to PON technologies [Topics in Optical Communications]. IEEE Communications Magazine., 45(3), S17-25.

    Article  Google Scholar 

  2. Lee, C. H., Sorin, W. V., & Kim, B. Y. (2006). Fiber to the home using a PON infrastructure. Journal of Lightwave Technology., 24(12), 4568–4583.

    Article  Google Scholar 

  3. Vukovic, A., Savoie, M., Hua, H., & Maamoun, K. (2007). Performance characterization of PON technologies. In Photonics North 2007 (Vol. 6796, pp. 912-918). SPIE.

  4. Abbas, H. S., & Gregory, M. A. (2016). The next generation of passive optical networks: A review. Journal of Network and Computer Applications., 1(67), 53–74.

    Article  Google Scholar 

  5. ITU‐T. Gigabit-capable passive optical networks (GPON): General characteristics, 2018.

  6. Recommendation IT. 987.3, 10-Gigabit-capable passive optical networks (XG-PON): Transmission convergence (TC) layer specification. Oct-2010.

  7. ITU-T, 10-Gigabit-Capable Passive Optical Networks (XG-PON): General Requirements, ITU-T Recommendation G.987.1. E 40850, (2010).

  8. Thangappan, T., Therese, B., Suvarnamma, A., & Swapna, G. S. (2020). Review on dynamic bandwidth allocation of GPON and EPON. Journal of Electronic Science and Technology, 18(4), 100044.

    Article  Google Scholar 

  9. ITU-T, 10-Gigabit-capable passive optical networks (XG-PON): Physical media dependent (PMD) layer specification G.987.2. E 40850, (2012).

  10. ITU-T, -5G wireless front haul requirements in a passive optical network context SERIES G, supplement 66, (2019), pp. 1–40.

  11. Leligou, H. C., Linardakis, C., Kanonakis, K., Angelopoulos, J. D., & Orphanoudakis, T. (2006). Efficient medium arbitration of FSAN compliant GPONs. International Journal of Communication Systems, 19(5), 603–617.

    Article  Google Scholar 

  12. Han, M. S., Yoo, H., Yoon, B. Y., Kim, B., & Koh, J. S. (2008). Efficient dynamic bandwidth allocation for FSAN-compliant GPON. Journal of Optical Networking, 7(8), 783–795.

    Article  Google Scholar 

  13. Han, M. S., Yoo, H., & Lee, D. S. (2013). Development of efficient dynamic bandwidth allocation algorithm for XGPON. ETRI Journal, 35(1), 18–26.

    Article  Google Scholar 

  14. Han, M. S. (2013). Simple and feasible dynamic bandwidth and polling allocation for XGPON. ICACT Transactions on Advanced Communications Technology (TACT), 2(5), 298–304.

    Google Scholar 

  15. M. S. Han, Dynamic bandwidth allocation with high utilization for XGPON, in: 16th international conference in advanced communication technology, IEEE; 2014: 994– 997.doi: https://doi.org/10.1109/ICACT.2014.6779107

  16. J. A. Arokkiam and K. N. Brown, Refining the GIANT dynamic bandwidth allocation mechanism for XG-PON, in IEEE ICC 2015 SAC - access networks and systems refining, pp. 2609–2614, 2015.

  17. Butt, R. A., Idrus, S. M., & Qureshi, K. N. (2017). Improved dynamic bandwidth allocation algorithm for XGPON. Journal of Optical Communication Networking., 9(1), 87–97. https://doi.org/10.1364/JOCN.9.000087

    Article  Google Scholar 

  18. Butt, R. A., Idrus, S. M., Rehman, S. U., Shah, P. M. A., & Zulkifli, N. (2017). Comprehensive polling and scheduling mechanism for long reach gigabit passive optical network. Journal of Optical Communication. https://doi.org/10.1515/joc-2017-0026

    Article  Google Scholar 

  19. Butt, R. A., Idrus, S. M., Zulkifli, N., & Ashraf, M. W. (2017). Comprehensive bandwidth utilization and polling mechanism for XGPON. International Journal of Communication Systems, 31(3), 1–18.

    Google Scholar 

  20. Memon, A. K., Mohammadani, H. K., Ain, U. N., Shaikh, A., Ullah, S., Zhang, Q., Das, B., Ullah, R., Tian, F., & Xin, X. (2019). Demand forecasting DBA algorithm for reducing packet delay with efficient bandwidth allocation in XG-PON. Electronics, 8(2), 147.

    Article  Google Scholar 

  21. Riley, G. F., & Henderson, T. R. (2010). The ns-3 network simulator. In K. Wehrle, M. Güneş, & J. Gross (Eds.), Modeling and Tools for Network Simulation. Springer.

    Google Scholar 

  22. Wu, X., Brown, K.N., Sreenan, C.J., Alvarez, P., Ruffini, M., Marchetti, N., Payne, D. and Doyle, L., 2013. An XG-PON module for the NS-3 network simulator.

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Correspondence to Brintha Therese.

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Thangappan, T., Therese, B. Implementation of Extra Efficient Bandwidth Utilization Dynamic Bandwidth Allocation Algorithm to Support Differentiated Service Classes in XGPON. Wireless Pers Commun 126, 481–491 (2022). https://doi.org/10.1007/s11277-022-09754-3

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