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Modelling Switches with Internal Buffering in Software-Defined Networks

机译:在软件定义的网络中使用内部缓冲对交换机建模

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OpenFlow supports internal buffering of data packets in an SDN switch whereby a fraction of data packet header is sent to the controller instead of an entire data packet. This internal buffering increases the robustness and the utilization of the link between SDN switches and controller by absorbing temporary burst of packets which may overwhelm the controller. Existing queuing models for SDN have focused on the switches that immediately send packets to the controller for decisioning, with no existing models investigating the impact of the internal buffer in an SDN switch and the associated trade-offs of having an internal buffer. In this paper, we propose an analytical model for SDN switch with the internal buffer to investigate the potential benefits, drawbacks and trade-off of internal buffering in SDN switches. It was observed that a switch with internal buffer achieves up to 30% lower average packet transfer delay and 7% lower packet loss rate at the cost of requiring up to 50% more queue capacity than one without the internal buffer. The proposed model is validated with discrete event simulation where the difference between simulation and analytical results was between 0.6% and 2.8% for average packet transfer delay and less than 6% for average packet loss rate. With this investigation, we provide some guidelines to SDN switch designers on the merits, demerits and trade-off of internal buffering in an SDN switch.
机译:OpenFlow支持在SDN交换机中对数据包进行内部缓冲,从而将一部分数据包头发送给控制器,而不是整个数据包。这种内部缓冲通过吸收可能使控制器不堪重负的临时突发数据包,提高了SDN交换机与控制器之间链路的健壮性和利用率。 SDN的现有排队模型集中在立即将数据包发送到控制器进行决策的交换机上,而没有现有的模型可以研究SDN交换机中内部缓冲区的影响以及具有内部缓冲区的相关权衡。在本文中,我们提出了一种带有内部缓冲区的SDN交换机的分析模型,以研究SDN交换机内部缓冲区的潜在优缺点和折衷方案。观察到,具有内部缓冲区的交换机与没有内部缓冲区的交换机相比,其队列容量平均降低了30%,分组丢失率降低了7%,其代价是队列容量增加了50%。该模型通过离散事件仿真进行了验证,仿真和分析结果之间的差异对于平均数据包传输延迟介于0.6%和2.8%之间,对于平均数据包丢失率小于6%。通过这次调查,我们为SDN交换机设计人员提供了一些有关SDN交换机内部缓冲的优缺点和折衷方法的指南。

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