Have a personal or library account? Click to login
Simulation Modelling of Multiservice Switched Networks Carrying Unicast and Multicast Traffic with Priorities Cover

Simulation Modelling of Multiservice Switched Networks Carrying Unicast and Multicast Traffic with Priorities

Open Access
|Feb 2025

References

  1. Clos, C. (1953) A study of non-blocking switching networks. The Bell System Technical Journal, 32(2), 406-424. doi: 10.1002/j.1538-7305.1953.tb01433.x.
  2. Durka, P. (2003) Introduction to modern statistics (in Polish). Adamantan, 2003, ISBN 83-85655-82-4.
  3. Głąbowski, M., Ivanov, H., Leitgeb, E., Sobieraj, M., Stasiak, M. (2020) Simulation studies of elastic optical networks based on 3-stage Clos switching fabric. Optical Switching and Networking, 36(12), 100555. doi:10.1016/j.osn.2020.100555.
  4. Nowak, B., Zwierzykowski, P. (2022) Simulation studies of the impact of traffic prioritization mechanisms on the traffic efficiency of multi-service network nodes. In: Proceedings of the 39th International Business Information Management Association (IBIMA), Granada, Spain, May 2022. IBIMA Publishing, part 3, pp. 434-449.
  5. Nowak, B. (2022) A simulation study on the influence of the call push-out scenarios on traffic effectiveness of multi-service network nodes. In: Proceedings of the 40th International Business Information Management Association (IBIMA, Tech Conference, Seville, Spain, November 2022. IBIMA Publishing, pp. 149-171.
  6. Nowak, B. (2023) A Simulation study on the influence of prioritized multicast connections on traffic effectiveness network nodes. In: Proceedings of the 42nd International Business Information Management Association Computer Science Conference IBIMA, Seville, Spain, November 2023. Seville: IBIMA Publishing, p. 335-345.
  7. Nowak, B., Piechowiak, M., Stasiak, M. and Zwierzykowski, P. (2020) An analytical model of a system with priorities servicing a mixture of different elastic traffic streams. Bulletin of the Polish Academy of Sciences Technical Sciences, 263-270. doi:10.24425/bpasts.2020.133111.
  8. Sehery, W., Clancy, C. (2017) Flow optimization in data centers with Clos networks in support of Cloud applications. IEEE Transactions on Network and Service Management, 14(4), 847-859. doi: 10.1109/TNSM.2017.2761321
  9. Sobieraj, M, Zwierzykowski, P, Leitgeb, E (2022) Simulation studies of elastic optical networks nodes with multicast connections. Human-centric Computing and Information Sciences, 12. doi:10.22967/HCIS.2022.12.005.
  10. Sobieraj, M. (2014) Modelling of switching networks with threshold mechanisms and multi-service traffic sources (in Polish). Poznań University of Technology, PhD dissertation.
  11. Sobieraj, M., Zwierzykowski, P., Leitgeb, E. (2021) Determination of traffic characteristics of elastic optical networks nodes with reservation mechanisms. Electronics, 10(15), 1853. doi:10.3390/electronics10151853.
  12. Sobieraj, M., Zwierzykowski, P., Leitgeb, E. (2021) Modelling and optimization of multi-service optical switching networks with threshold management mechanisms. Electronics, 10(13), 20. doi:10.3390/electronics10131515.
  13. Stasiak, M., Sobieraj, M., Zwierzykowski, P (2022) Modeling of multi-service switching networks with multicast connections. IEEE Access, PP, 1-1. doi:10.1109/ACCESS.2022.3141689.
  14. Tyszer, J. (1999) Object-oriented computer simulation of discrete-event systems. Kluwer Academic Publishers Group.
  15. Yang, S., Xin, S., Zhao, Z., Wu, B. (2016) Minimizing packet delay via load balancing in Clos switching networks for data centers. In: 2016 International Conference on Networking and Network Applications (NaNA), Hakodate, Japan, July 2016. IEEE, pp. 23-28. doi: 10.1109/NaNA.2016.14.
DOI: https://doi.org/10.2478/ttj-2025-0001 | Journal eISSN: 1407-6179 | Journal ISSN: 1407-6160
Language: English
Page range: 1 - 12
Published on: Feb 19, 2025
In partnership with: Paradigm Publishing Services
Publication frequency: 4 issues per year

© 2025 Błażej Nowak, Piotr Zwierzykowski, published by Transport and Telecommunication Institute
This work is licensed under the Creative Commons Attribution-NonCommercial-NoDerivatives 4.0 License.