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Multi-layer protection in IP-over-WDM networks with and with no backup lightpath sharing

机译:具有或不具有备用光路共享的IP-over-WDM网络中的多层保护

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We consider the problem of multi-layer protection in IP-over-WDM networks. In our multi-layer protection schemes, traffic is protected either at the lightpath level or at the label switched path (LSP) level based on the restoration time requirements. In lightpath-level protection, traffic on a path (LSP) is protected by routing it over primary light-paths which are protected at the optical layer by their respective backup lightpaths. In LSP-level protection, the traffic on a primary LSP is protected at the IP-multi-protocol label switching (MPLS) layer by a backup LSP. In this case, both primary and backup LSPs traverse unprotected lightpaths. We allow two backup LSPs to share bandwidth resource on these unprotected lightpaths if their primary LSPs are link-disjoint. In lightpath-level protection, whether backup resources can be shared or not depends on the protection mechanisms used. In 1:1 dedicated protection where the backup lightpath is pre-configured at the time of setting up of the corresponding primary lightpath, sharing is not possible. However, sharing is allowed in shared protection where the backup lightpaths are configured only after failure. We consider these two schemes and refer them as multi-layer protection with no backup lightpath sharing (MLP-NLS) and multi-layer protection with backup lightpath sharing (MLP-LS). An inter-level sharing (ILS) method is proposed to improve resource utilization in MLP-NLS, by allowing dedicated backup lightpaths to be used by backup LSPs. Two integrated-routing algorithms are developed to select paths in lightpath-level protection and LSP-level protection with the objective to utilize the network resources efficiently. We verify the effectiveness of the proposed multi-layer protection schemes through simulation results on the NSFNET and Pan-European networks.
机译:我们考虑WDM IP网络中的多层保护问题。在我们的多层保护方案中,根据恢复时间要求,在光路径级别或标签交换路径(LSP)级别保护流量。在光路径级保护中,路径(LSP)上的流量通过在主要光路径上路由而受到保护,该主要光路径在光层受到其各自的备用光路径保护。在LSP级保护中,主LSP上的流量在IP多协议标签交换(MPLS)层受到备用LSP的保护。在这种情况下,主LSP和备用LSP均会穿越不受保护的光路。如果两个备用LSP的主LSP是链路不相交的,则我们允许两个备用LSP在这些不受保护的光路径上共享带宽资源。在光路径级保护中,是否可以共享备份资源取决于所使用的保护机制。在1:1专用保护中,在设置相应的主光路时会预先配置备用光路,因此无法共享。但是,在共享保护中允许共享,其中仅在发生故障后才配置备用光路。我们考虑这两种方案,并将它们称为没有备份光路共享的多层保护(MLP-NLS)和没有备份光路共享的多层保护(MLP-LS)。提出了一种层间共享(ILS)方法,通过允许备用LSP使用专用的备用光路径来提高MLP-NLS中的资源利用率。为了有效利用网络资源,开发了两种集成路由算法来选择光路级保护和LSP级保护中的路径。我们通过在NSFNET和泛欧洲网络上的仿真结果验证了所提出的多层保护方案的有效性。

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