基于SIP的MPLS动态带宽分配

M. Hachimi, B. Tremblay, M. Kadoch, M. Bennani
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引用次数: 4

摘要

随着语音等实时应用向基于IP的平台的迁移,现有的IP网络能力已不足以提供最终用户所习惯的服务质量(QoS)水平。虽然DiffServ和MPLS等新协议允许一定数量的流量优先级,但保证的QoS需要准入控制和动态资源管理。过度保留的优点是变化不频繁,但会导致资源的浪费。另一方面,预留不足不能满足用户流的QoS期望。在本文中,我们考虑基于MPLS之上的SIP(会话发起协议)架构来提供控制准入。在这个架构中,我们提出了一种新的方法来最优地保留LSP(标签交换路径)的带宽,避免在预测未来流量的基础上进行过多的带宽重新协商。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Dynamic Bandwidth Allocation in SIP based MPLS
With the migration of real-time applications such as voice onto IP-based platforms, the existing IP network capabilities become inadequate to provide the quality-of- service (QoS) levels that the end-users are accustomed to. While new protocols such as DiffServ and MPLS allow some amount of traffic prioritization, guaranteed QoS requires admission control and dynamic resource management. Over-reservation has the advantage of infrequent variations but leads to wastage of resources. Under- reservation, on the other hand, does not meet the QoS expectations of the user flows. In this paper, we consider the architecture based on SIP (Session Initiation Protocol) over MPLS to provide control admission. In this architecture, we propose a new method to reserve optimally the bandwidth of an LSP (Label Switched Path), avoiding an excess of bandwidth renegotiations on the basis of prediction of future traffic.
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