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A New Low-Complexity QoS Routing Algorithm for MPLS Traffic Engineering

机译:用于MPLS流量工程的新低复杂性QoS路由算法

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One of the important concepts in MPLS Traffic Engineering (TE) is LSP setup routing. The objective of routing algorithm is to increase the number of accepted request and satisfying Quality of Service (QoS) constrains. Although much work has been done on laying MPLS paths to optimize performance, most has focused on satisfying bandwidth requirements as QoS constrains. The previously published research have relied on load balancing to avoid network bottlenecks and produced longer and costly paths. Because of the longer paths, the routing quality as well as the efficiency of the network infrastructure has been degraded dramatically. This paper presents a novel Bandwidth Guarantee with Low Complexity (BGLC) algorithm for MPLS traffic engineering. In our paper, LSP setup requests are represented in terms of a pair of ingress and egress routers as well as their bandwidth requirement, and arrive one by one. Our paper does not consider a priori knowledge for future LSP setup requests and their characteristics. Our approach is an improvement of the well-known bandwidth constrained routing algorithms since it compromises among network load balancing, path length reduction, and minimizing path cost with low complexity. Simulation results reveal that in comparison with the most recent algorithms, BGLC presents better performances under a wide range of workload, topology and system parameters.
机译:MPLS流量工程(TE)中的一个重要概念是LSP设置路由。路由算法的目的是增加接受请求的数量并满足服务质量(QoS)约束。虽然在铺设了MPLS路径以优化性能的情况下进行了很多工作,但大多数都集中在满足带宽要求作为QoS约束。之前发表的研究依赖于负载平衡,以避免网络瓶颈并产生更长且昂贵的路径。由于较长的路径,路由质量以及网络基础设施的效率显着降低。本文提出了一种新的带宽保证,具有低复杂性(BGLC)用于MPLS流量工程的算法。在我们的论文中,LSP安装请求以一对入口和出口路由器以及它们的带宽要求表示,并逐一到达。我们的论文不会考虑未来LSP设置请求及其特征的先验知识。我们的方法是改进了众所周知的带宽约束路由算法,因为它妥协了网络负载平衡,路径长度减小,并且最小化了具有低复杂度的路径成本。仿真结果表明,与最近的算法相比,BGLC在各种工作量,拓扑和系统参数下呈现出更好的性能。

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