Controlling overload in networks of SIP servers

V. Hilt, I. Widjaja
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引用次数: 117

Abstract

The session initiation protocol (SIP) is rapidly being adopted as the signaling protocol for establishing, modifying and terminating multimedia sessions. With the increasing use of SIP in large deployments, it is now becoming apparent that the current SIP design does not easily scale up to large network sizes and SIP servers are not well equipped to handle overload conditions. When a SIP server is operating close to or above its capacity limit, message retransmissions by various SIP timers can cause the network to be severely overloaded and result in an extremely low goodput. In this paper, we first provide a detailed analysis of the behavior of SIP servers under overload. We show that SIP servers are often unable to recover from congestion collapse once it has occurred and that overload can spread throughout a network of SIP servers. We then discuss mechanisms and algorithms for controlling overload in these servers. We found that performing overload control locally at a server provides a simple remedy for light cases of overload; however, it is ineffective in handling higher amounts of load. Finally, we investigate distributed overload control mechanisms for SIP and show that they are effective in controlling overload of SIP servers.
控制SIP服务器网络过载
会话发起协议(SIP)作为多媒体会话的建立、修改和结束的信令协议正迅速被采用。随着SIP在大型部署中的使用越来越多,现在越来越明显的是,当前的SIP设计不容易扩展到大型网络规模,SIP服务器也不能很好地处理过载情况。当SIP服务器的运行接近或超过其容量限制时,通过各种SIP计时器进行的消息重传可能导致网络严重过载,并导致极低的吞吐量。在本文中,我们首先详细分析了SIP服务器在过载情况下的行为。我们表明,一旦发生拥塞崩溃,SIP服务器通常无法恢复,并且过载可以在整个SIP服务器网络中传播。然后讨论控制这些服务器过载的机制和算法。我们发现,在服务器本地执行过载控制为轻微过载情况提供了一个简单的补救措施;然而,它在处理大量负载时是无效的。最后,我们研究了SIP的分布式过载控制机制,并证明了它们在控制SIP服务器过载方面的有效性。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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