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Traffic Engineering in G-MPLS networks with QoS guarantees

机译:具有QoS保证的G-MPLS网络中的流量工程

摘要

In this paper a new Traffic Engineering (TE) scheme to efficiently route sub-wavelength requests with different QoS requirements is proposed for G-MPLS networks. In most previous studies on TE based on dynamic traffic grooming, the objectives were to minimize the rejection probability by respecting the constraints of the optical node architecture, but without considering service differentiation. In practice, some high-priority (HP) connections can instead be characterized by specific constraints on the maximum tolerable end-to-end delay and packet-loss ratio. The proposed solution consists of a distributed two-stage scheme: each time a new request arrives, an on-line dynamic grooming scheme finds a route which fulfills the QoS requirements. If a HP request is blocked at the ingress router, a preemption algorithm is executed locally in order to create room for this traffic. The proposed preemption mechanism minimizes the network disruption, both in term of number of rerouted low-priority connections and new set-up lightpaths, and the signaling complexity. Extensive simulation experiments are performed to demonstrate the efficiency of our scheme.
机译:本文针对G-MPLS网络提出了一种新的流量工程(TE)方案,以有效地路由具有不同QoS要求的子波长请求。在基于动态业务量修饰的TE的大多数先前研究中,目标是通过考虑光节点架构的约束来最大程度地降低拒绝概率,但不考虑服务差异。实际上,某些高优先级(HP)连接可以通过对最大可忍受的端到端延迟和丢包率的特定约束来表征。所提出的解决方案由一个分布式的两阶段方案组成:每当一个新请求到达时,一个在线动态修饰方案就会找到一条满足QoS要求的路由。如果HP请求在入口路由器处被阻止,则抢占算法将在本地执行,以便为该流量创造空间。拟议的抢占机制在重新路由的低优先级连接的数量和新设置的光路以及信令复杂性方面都将网络中断最小化。进行了广泛的仿真实验,以证明我们的方案的效率。

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  • 作者单位
  • 年度 2003
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  • 原文格式 PDF
  • 正文语种 {"code":"en","name":"English","id":9}
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