SUPPLY QUALITY SERVICE VOIP THROUGH CALL SIGNALING OVERLOAD CONTROL

Authors

  • Ghusoon Alabbas Department of Computer - College of Engineering - Ferdowsi University.
  • Seyed Amin Hosseini Seno Department of Computer - College of Engineering - Ferdowsi University.

DOI:

https://doi.org/10.53555/ephijse.v4i3.177

Keywords:

Session Initiation Protocol, overload control

Abstract

SIP (session initiation protocol (is an application layer protocol to create, maintain and ending the multimedia sessions. These protocols have no suitable mechanism for encountering with the overload, so when a server is overloaded, it`s effectiveness is reduced and eventually server’s real throughput reaches zero. To control the overload, various methods have been proposed, but there are some basic challenges presented in presented methods that lead to poor performance while there is an overloaded server in the network. The current study focusing on server – server’s overload, a distributed overload control method, based on dynamic window and implicit feedback is proposed to control overload. In order to extend the originally proposed algorithm which uses the violation of the calling delay from a specific threshold as an incentive for reducing the sending load to downstream proxy, adaptive methods are proposed. The performance of the proposed algorithms has been evaluated.

References

. Rosenberg, J., Schulzrinne, H., Camarillo, G., Johnston, A., Peterson, J., Sparks, R., Handley, M. and Schooler, E., 2002. SIP: session initiation protocol (No. RFC 3261).

. Karapantazis, S. and Pavlidou, F.N., 2009. VoIP: A comprehensive survey on a promising technology. Computer Networks, 53(12), pp.2050-2090.

. Shen, C. and Schulzrinne, H., 2010, August. On TCP-based SIP server overload control. In Principles, Systems and Applications of IP Telecommunications (pp. 71-83). ACM. [4] Hilt, V. and Widjaja, I., 2008, October. Controlling overload in networks of SIP servers. In Network Protocols, 2008. ICNP 2008. IEEE International Conference on (pp. 83-93). IEEE.

. Ohta, M., 2006, March. Overload control in a SIP signaling network. In Proceeding of World Academy of Science, engineering and technology (pp. 205-210).

. Azhari, S.V., Homayouni, M., Nemati, H., Enayatizadeh, J. and Akbari, A., 2012. Overload control in SIP networks using no explicit feedback: A window based approach. Computer Communications, 35(12), pp.1472-1483.

. Shen, C., Schulzrinne, H. and Nahum, E., 2008. Session initiation protocol (SIP) server overload control: Design and evaluation. In Principles, systems and applications of IP telecommunications. Services and security for next generation networks (pp. 149-173). Springer, Berlin, Heidelberg.

. Yang, J., Huang, F. and Gou, S., 2009, September. An optimized algorithm for overload control of SIP signaling network. In Wireless Communications, Networking and Mobile Computing, 2009. WiCom'09. 5th International Conference on (pp. 1-4). IEEE.

. Joe, I. and Lee, J., 2012, January. An overload control algorithm based on priority scheduling for sip proxy server. In Proceedings on the International Conference on Internet Computing (ICOMP) (p. 1). The Steering Committee of The World Congress in Computer Science, Computer Engineering and Applied Computing (WorldComp).

. Montagna, S. and Pignolo, M., 2008, April. Performance evaluation of load control techniques in sip signaling servers. In Systems, 2008. ICONS 08. Third International Conference on (pp. 51-56). IEEE.

. Noel, E. and Johnson, C.R., 2009, September. Novel overload controls for SIP networks. In Teletraffic Congress, 2009. ITC 21 2009. 21st International (pp. 1-8). IEEE.

. Chentouf, Z., 2011, April. SIP overload control using automatic classification. In Electronics, Communications and Photonics Conference (SIECPC), 2011 Saudi International (pp. 1-6). IEEE.

. Garroppo, R.G., Giordano, S., Niccolini, S. and Spagna, S., 2011. A prediction-based overload control algorithm for sip servers. IEEE transactions on network and service management, 8(1), pp.39-51.

. Hong, Y., Huang, C. and Yan, J., 2010, December. Mitigating sip overload using a control-theoretic approach. In Global Telecommunications Conference (GLOBECOM 2010), 2010 IEEE (pp. 1-5). IEEE.

. Homayouni, M., Jahanbakhsh, M., Azhari, V. and Akbari, A., 2010, April. Overload control in SIP servers: Evaluation and improvement. In Telecommunications (ICT), 2010 IEEE 17th International Conference on (pp. 666-672). IEEE.

. Abdelal, A. and Matragi, W., 2010, January. Signal-based overload control for SIP servers. In Consumer Communications and Networking Conference (CCNC), 2010 7th IEEE (pp. 1-7). IEEE.

. Liao, J., Wang, J., Li, T., Wang, J., Wang, J. and Zhu, X., 2012. A distributed end-to-end overload control mechanism for networks of SIP servers. Computer Networks, 56(12), pp.2847-2868.

. Wang, Y., 2010, August. SIP overload control: a backpressure-based approach. In ACM SIGCOMM Computer Communication Review (Vol. 40, No. 4, pp. 399-400). ACM.

. Egger, C., Happenhofer, M. and Reichl, P., 2011, September. SIP proxy high-load detection by continuous analysis of response delay values. In Software, Telecommunications and Computer Networks (SoftCOM), 2011 19th International Conference on (pp. 1-5). IEEE.

. Low, S.H., Paganini, F. and Doyle, J.C., 2002. Internet congestion control. IEEE control systems, 22(1), pp.28-43.

Downloads

Published

2018-03-27