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Integration of Explicit Effective-Bandwidth-Based QoS Routing With Best-Effort Routing

机译:显式基于有效带宽的QoS路由与尽力而为路由的集成

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This paper presents a methodology for protecting low-priority best-effort (BE) traffic in a network domain that provides both virtual-circuit routing with bandwidth reservation for QoS traffic and datagram routing for BE traffic. When a QoS virtual circuit is established, bandwidths amounting to the traffic''s effective bandwidths are reserved along the links. We formulate a new QoS-virtual-circuit admission control and routing policy that sustains a minimum level of BE performance. In response to a QoS connection request, the policy executes a two-stage optimization. The first stage seeks a minimum-net-effective-bandwidth reservation path that satisfies a BE protecting constraint; the second stage is a tie-breaking rule, selecting from tied paths one that least disturbs BE traffic. Our novel policy implementation efficiently executes both optimization stages simultaneously by a single run of Dijkstra''s algorithm. According to simulation results, within a practical operating range, the consideration that our proposed policy gives to the BE service does not increase the blocking probability of a QoS connection request.
机译:本文提出了一种在网络域中保护低优先级尽力而为(BE)流量的方法,该方法既为QoS流量提供带带宽预留的虚拟电路路由,又为BE流量提供数据报路由。当建立QoS虚拟电路时,沿着链路保留相当于流量有效带宽的带宽。我们制定了一种新的QoS虚拟电路接纳控制和路由策略,该策略可以维持最低水平的BE性能。响应QoS连接请求,该策略执行两阶段优化。第一阶段寻求满足BE保护约束条件的最小网络有效带宽预留路径。第二阶段是打破平局规则,从捆绑路径中选择干扰最小的BE流量。通过新颖的Dijkstra算法,我们新颖的策略实施可以高效地同时执行两个优化阶段。根据仿真结果,在实际操作范围内,我们提出的策略对BE服务的考虑不会增加QoS连接请求的阻塞概率。

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