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Evaluation of class-based MPLS routing algorithms

机译:评估基于类的MPLS路由算法

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摘要

To provide predictive end-to-end QoS in the large-scale Internet, a network operation method has been studied which combines DiffServ (differentiated services) technology with traffic engineering using MPLS (Multi-Protocol Label Switching) technology. DiffServ cannot offer end-to-end QoS by itself, because it is a hop-by-hop relative-priority control. Therefore, traffic engineering support using MPLS routing is needed. In this paper, we assume EF (expedited forwarding) class which corresponds to voice traffic requiring path delay quality, and BE (best effort) class which corresponds to data traffic requiring throughput quality. And using QoS simulation, we evaluate NIPLS routing methods, which are categorized based on routing algorithms and choice of E-LSP (class-independent route) and L-LSP (class-related route). The results show that the method for L-LSP which uses two routing algorithms depending on DiffServ classes can offer QoS required by the classes.
机译:为了在大规模因特网中提供预测性的端到端QoS,已经研究了一种网络操作方法,该方法将DiffServ(区分服务)技术与使用MPLS(多协议标签交换)技术的流量工程相结合。 DiffServ本身不能提供端到端QoS,因为它是逐跳的相对优先级控制。因此,需要使用MPLS路由的流量工程支持。在本文中,我们假设EF(快速转发)类别对应于需要路径延迟质量的语音流量,而BE(尽力而为)类别对应于需要吞吐量质量的数据流量。并使用QoS仿真,我们评估了NIPLS路由方法,这些方法基于路由算法以及E-LSP(与类无关的路由)和L-LSP(与类相关的路由)的选择进行了分类。结果表明,基于DiffServ类使用两种路由算法的L-LSP方法可以提供类所需的QoS。

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