Primary and backup paths optimal design for traffic engineering in hybrid IGP/MPLS networks

A. Mereu, D. Cherubini, A. Fanni, A. Frangioni
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引用次数: 27

Abstract

The paper describes an optimization model which aims at minimizing the maximum link utilization of IP telecommunication networks under the joint use of the traditional IGP protocols and the more sophisticated MPLS-TE technology. The survivability of the network is taken into account in the optimization process implementing the path restoration scheme. This scheme benefits of the Fast Re-Route (FRR) capability allowing service providers to offer high availability and high revenue SLAs (Service Level Agreements). The hybrid IGP/MPLS approach relies on the formulation of an innovative Linear Programming mathematical model that, while optimizing the network utilization, provides optimal user performance, efficient use of network resources, and 100% survivability in case of single link failure. The possibility of performing an optimal exploitation of the network resources throughout the joint use of the IGP and MPLS protocols provides a flexible tool for the ISP (Internet Service Provider) networks traffic engineers. The efficiency of the proposed approach is validated by a wide experimentation performed on synthetic and real networks. The obtained results show that a limited number of LSP tunnels have to be set up in order to significantly reduce the congestion level of the network while at the same time guaranteeing the survivability of the network.
IGP/MPLS混合网络流量工程的主备路径优化设计
本文描述了在传统IGP协议和更复杂的MPLS-TE技术联合使用的情况下,以最小化IP通信网络的最大链路利用率为目标的优化模型。在实现路径恢复方案的优化过程中,考虑了网络的生存性。该方案得益于快速重路由(FRR)功能,允许服务提供商提供高可用性和高收益sla(服务水平协议)。IGP/MPLS混合方式依靠创新的线性规划数学模型的制定,在优化网络利用率的同时,提供最佳的用户性能,有效利用网络资源,并在单链路故障情况下提供100%的生存能力。通过IGP和MPLS协议的联合使用,实现网络资源最优利用的可能性,为ISP (Internet Service Provider)网络流量工程师提供了一个灵活的工具。在合成网络和真实网络上进行的大量实验验证了该方法的有效性。研究结果表明,在保证网络生存能力的同时,必须建立有限数量的LSP隧道,才能显著降低网络的拥塞程度。
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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