MODEL OF AN ELECTRONIC COMMUNICATION NODE HANDLING TCP TRAFFIC
DOI:
https://doi.org/10.26906/SUNZ.2023.4.152Keywords:
electronic communication network, node, model, mass service systemAbstract
An important current problem is the analysis and evaluation of the efficiency of the functioning of the node of the electronic communication network, taking into account the retransmission of lost packets. The real possibility of conducting such an analysis is the construction of an adequate mathematical model of the node. The goal of the task is to find the probabilities of the described system being in multiple states, to find the probability of system failure and the probability of initiating a traffic-blocking packet. It was developed the network node model based on the mathematical tools of the queuing theory. A model takes into account the storage of sent packages copies until the moment of successful delivery confirmation receiving; otherwise they are again enqueued on service. The formulas to estimate the probabilities of system states are got.Downloads
References
K. Yesmar. TCP/IP and Ethernet Quick Reference Guide: From the OSI Model to port definitions, packet structure and subnetting. 2022. 547p.
Larry L Peterson, Lawrence Brakmo, Bruce S Davie. TCP Congestion Control: A Systems Approach. 2022. 138 р.
Kamoun, F., Outay, F.: IP/MPLS networks with hardened pipes: service concepts, traffic engineering and design considerations. Journal of Ambient Intelligence and Humanized Computing. 2018. pp. 1-8.
Dimitris Bertsimas, David Gamarnik. Queueing Theory: Classical and Modern Methods. 2022. 586p.
Ibrahim Hussein, S.A., Zaki, F.W., Ashour, M.M.: Performance evaluation of software‐defined wide area network based on queueing theory. IET Netw. 11(3-4), 128–145 (2022). https://doi.org/10.1049/ntw2.12039
Harchol-Balter, M. The multiserver job queueing model. Queueing Syst 100, 201–203 (2022). https://doi.org/10.1007/s11134-022-09762-x
Yang, S., Xu, C., Zhong, L., Shen, J., Muntean, G. M. (2019), “A QoE-Driven Multicast Strategy With Segment Routing–A Novel Multimedia Traffic Engineering Paradigm”, IEEE Transactions on Broadcasting, No. 66(1), P. 34-46. DOI: https://doi.org/10.1109/TBC.2019.2932338
Petrovska, I. and Kuchuk, H. (2022), “Static allocation method in a cloud environment with a service model IAAS”, Advanced Information Systems, vol. 6, is. 3, pp. 99–106, doi: https://doi.org/10.20998/2522-9052.2022.3.13.
Ткачов В. М., Коваленко А. А., Кучук Г. А., Ні Я. С. Метод забезпечення живучості високомобільної комп'ютерної мережі. Сучасні інформаційні системи. 2021. Том 5, № 2. С. 159-165. DOI: https://doi.org/10.20998/2522-9052.2021.2.22
Stallings, W. (2015), Foundations of modern networking: SDN, NFV, QoE, IoT, and Cloud, Addison-Wesley Professional, 560 p.