Designing SDN Approach Using WebRTC for Low Bandwidth Over Data Communication

Section: Research Paper
Published
Jun 25, 2025
Pages
36-42

Abstract

The network must choose the best route from a list of options to support Quality of Service (QoS) for engaging real-time video applications like video conferencing and remote learning. Other network paths may connect the point of origin and the destination, but because of the network's intricate architecture and strong coupling, it is challenging to find a different route. Network topologies like Integrated Services (ISs) might not provide the best performance as long as they install the path determined by the routing protocol. This paper's main goal is to use Python programming language and VirtualBox Manager to develop numerous interactive video contributions while determining the quality of service. To choose the optimal route from a network-wide viewpoint, a novel work utilising Web Real-Time Interaction (WebRTC) technological advances with Software-Defined Networking (SDN). Additionally, it has illustrated the results of a setup and evaluates performance based on message complexity and network throughput metrics.

References

  1. B. Goswami, M. Kulkarni, and J. Paulose, A Survey on P4 Challenges in Software Defined Networks: P4 Programming, IEEE Access, vol. 11, no. May, pp. 5437354387, 2023, doi: 10.1109/ACCESS.2023.3275756.
  2. D. Zeman, F. Rezac, M. Voznak, and J. Rozhon, Session Initiation Protocol Proxy in a Role of a Quality of Service Control Application in Software-Defined Networks, Designs, vol. 6, no. 6, pp. 112, 2022, doi: 10.3390/designs6060123.
  3. H. Eltaief, A. El Kamel, and H. Youssef, MSA-SDMN: multicast source authentication scheme for multi-domain software defined mobile networks, J. Inf. Telecommun., pp. 124, 2023, doi: 10.1080/24751839.2023.2250123.
  4. K. Aggarwal, Cloud-to-Edge Internet of Things and 5G Network Security via Software-Defined Networking (2020), J. Crit. Rev., vol. 07, no. 09, pp. 38173825, 2023, doi: 10.48047/jcr.07.09.586.
  5. N. Edan and S. A. Mahmood, Design and implement a new mechanism for audio , video and screen Design and implement a new mechanism for audio , video and screen recording based on WebRTC technology, Int. J. Electr. Comput. Eng., vol. 10, no. March, pp. 27732778, 2020, doi: 10.11591/ijece.v10i3.pp2773-2778.
  6. R. Pyla, V. Pandalaneni, P. J. N. Raju, and G. P. G, Design and Development of swarm AGV s alliance for Search and Rescue operations, J. Robot. Control, vol. 4, no. 6, pp. 791807, 2023, doi: 10.18196/jrc.v4i6.18392.
  7. R. Ramalingam et al., Routing Protocol for MANET Based on QoS-Aware Service Composition with Dynamic Secured Broker Selection, Electron., vol. 11, no. 17, p. 160, 2022, doi: 10.3390/electronics11172637.
  8. References
  9. S. Qureshi, Path Establishment in Software Defined Optical Networks, Technology Sydney Faculty, 2023.
  10. Salah S. Abed, Optimization Flow Control In Software-Defined Networking Using Cuckoo Search Algorithm, J. Namibian Stud., vol. 3, pp. 25362553, 2023.
  11. T. von Eicken, D. E. Culler, S. C. Goldstein, and K. E. Schauser, Active messages: a mechanism for integrated communication and computation, ACM SIGARCH Comput. Archit. News, vol. 20, no. 2, pp. 256266, 1992, doi: 10.1145/146628.140382.
  12. Y. Al-Dunainawi, B. R. Al-Kaseem, and H. S. Al-Raweshidy, Optimized Artificial Intelligence Model for DDoS Detection in SDN Environment, IEEE Access, vol. 11, no. August, pp. 106733106748, 2023, doi: 10.1109/ACCESS.2023.3319214.

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How to Cite

Mohamad Basher, M. (2025). Designing SDN Approach Using WebRTC for Low Bandwidth Over Data Communication. IRAQI JOURNAL OF STATISTICAL SCIENCES, 21(2), 36–42. Retrieved from https://rjps.uomosul.edu.iq/index.php/stats/article/view/21011