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Simulative Performance Analysis of Resilient Packet Ring in Protection Modes

机译:保护模式中弹性包环的模拟性能分析

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To recover link failure on resilient packet ring (RPR) networks, IEEE 802.17 working group defines two protection mechanisms, steering and wrapping, which can restore a failed network in less than 50ms. In this study, we focus on the RPR protection mechanisms and the properties of the three different traffic classes defined in RPR for the two mechanisms by simulation. We find that the frame delay caused by protection in comparison with the normal condition is much higher. In the steering mechanism, the head nodes of protected ringlet sections can seize more bandwidth than their downstream nodes. In the wrapping mechanism, the frame delay of unwrapped frames may be influenced by the wrapped frames. In the simulation, we can disclose the pro and con of the two protection mechanisms and show some points to achieve further improvement.
机译:为了恢复弹性数据包环(RPR)网络上的链路故障,IEEE 802.17工作组定义了两个保护机制,转向和包装,可以恢复小于50ms的故障网络。在这项研究中,我们专注于RPR保护机制和RPR中定义的三种不同流量类的特性通过模拟。我们发现,与正常情况相比,由保护引起的帧延迟要高得多。在转向机构中,受保护的林段的头部节点可以抓握比下游节点更多的带宽。在包装机构中,未包装框架的帧延迟可能受到包装框架的影响。在模拟中,我们可以披露两种保护机制的亲和融合,并显示一些要点以实现进一步的改进。

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