On analytical model for optimal SIP server hop-by-hop overload control

In this paper, we present analytical results of the analysis of the queueing system that models signalling hop-by-hop load control mechanism for SIP server. The so-called hop-by-hop overload control, known from recent IETF drafts and RFCs, is based on hysteretic load control with two thresholds for reducing potential oscillations between the control-on and control-off states under certain loading conditions. Adjustment of thresholds values makes possible the load control of signalling traffic and therefore meeting blocking requirements. New approach that allows fast computation of joint stationary probability distribution of finite M2-M-1-R queue with bi-level hysteretic input load control is proposed. Illustrative numerical example is given to demonstrate some optimization issues. © 2012 IEEE.

Authors
Publisher
IEEE
Language
English
Pages
286-291
Status
Published
Number
6459680
Year
2012
Organizations
  • 1 Telecommunication Systems Department, Peoples' Friendship University, Moscow, Russian Federation
  • 2 Institute of Informatics Problems of RAS, Moscow, Russian Federation
Keywords
hop-by-hop mechanism; hysteretic control; loss-based overload control; optimal control; queuing model; SIP server
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