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Survivable MPLS Over Optical Transport Networks: Cost and Resource Usage Analysis

机译:光传输网络上可生存的MPLS:成本和资源使用分析

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In this paper we study different options for the survivability implementation in MPLS over optical transport networks (OTN) in terms of network resource usage and configuration cost. We investigate two approaches to the survivability deployment: single layer and multilayer survivability and present various methods for spare capacity allocation (SCA) to reroute disrupted traffic. The comparative analysis shows the influence of the offered traffic granularity and the physical network structure on the survivability cost: for high bandwidth LSPs, close to the optical channel capacity, the multilayer survivability outperforms the single layer one, whereas for low bandwidth LSPs the single layer survivability is more cost-efficient. On the other hand, sparse networks of low connectivity parameter use more wavelengths for optical path routing and increase the configuration cost, as compared with dense networks. We demonstrate that by mapping efficiently the spare capacity of the MPLS layer onto the resources of the optical layer one can achieve up to 22% savings in the total configuration cost and up to 37% in the optical layer cost. Further savings (up to 9 %) in the wavelength use can be obtained with the integrated approach to network configuration over the sequential one, however, at the increase in the optimization problem complexity. These results are based on a cost model with different cost variations, and were obtained for networks targeted to a nationwide coverage
机译:在本文中,我们从网络资源使用和配置成本的角度研究了光传输网络(OTN)上MPLS的可实现性实现的不同选择。我们研究了生存能力部署的两种方法:单层生存能力和多层生存能力,并提出了各种备用容量分配(SCA)方法来重新路由中断的流量。对比分析表明,所提供的业务粒度和物理网络结构对可生存性成本的影响:对于高带宽LSP,接近光信道容量,多层可生存性优于单层,而对于低带宽LSP则优于单层生存能力更具成本效益。另一方面,与密集型网络相比,低连接性参数的稀疏网络将更多波长用于光路路由并增加了配置成本。我们证明,通过将MPLS层的备用容量有效地映射到光学层的资源上,可以节省22%的总配置成本和37%的光学层成本。通过在顺序配置方法上进行网络配置的集成方法,可以进一步节省波长使用(最多9%),但是会增加优化问题的复杂性。这些结果基于具有不同成本变化的成本模型,并且是针对覆盖全国的网络而获得的

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