首页> 外文会议>Conference on Metro and Access Networks II, Oct 16-17, 2002, Shanghai, China >Novel Bandwidth Allocation Scheme for Ring Networks with Spatial Reuse
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Novel Bandwidth Allocation Scheme for Ring Networks with Spatial Reuse

机译:具有空间复用的环形网络的新型带宽分配方案

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Spatial Reuse can significantly increase the throughput of optical ring networks by allowing multiple stations to transmit concurrently over distinct segments of the ring. Buffer Insertion Ring (BIR) scheme is widely used to achieve spatial reuse. However, because non-preemptive priority is usually given to the ring (pass-through) traffic, BIR scheme may cause fairness problems in allocating the ring bandwidth among distinct nodes. In this paper, we propose a novel approach that can prevent starvation and maximize the throughput with low complexity. The main idea of this method is that for every node of the ring to provide a separate queue for each source that shares the output link of the particular node. We then fairly allocate the output link bandwidth to all the sources based on the weight of the corresponding queues. Simulations and analysis show that this new scheme can provide fairness with less end-to-end delay compare to BIR scheme.
机译:通过允许多个站点同时在环的不同段上进行传输,空间重用可以显着提高光环网络的吞吐量。缓冲区插入环(BIR)方案被广泛用于实现空间重用。但是,由于通常将非抢占优先级给予环(直通)流量,因此BIR方案可能会在不同节点之间分配环带宽时引起公平性问题。在本文中,我们提出了一种新颖的方法,该方法可以防止饥饿并以低复杂度最大化吞吐量。此方法的主要思想是为环的每个节点提供一个单独的队列,为每个共享特定节点输出链路的源提供队列。然后,我们根据相应队列的权重将输出链路带宽公平地分配给所有源。仿真和分析表明,与BIR方案相比,该新方案可以以更少的端到端延迟提供公平性。

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