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TCP Testing: How Well Does ns2 Match Reality?

机译:TCP测试:ns2与现实的匹配程度如何?

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摘要

New transport protocols continue to appear as alternatives to the Transmission Control Protocol (TCP). Many of these are designed to address TCPȁ9;s inefficiency in operating over paths with a high bandwidth-delay product (BDP). To test these new protocols, especially comparatively, and to understand their interactions, extensions to the ns2 simulator allow real code from the linux kernel to be used within the ns2 simulations. However, how does the performance of such configurations compare to test-bed experiments of the same configuration? Although, anecdotally, there are often comments within the research community about such issues, there are no studies that quantify the differences for a specific protocol suite. Using a simple testbed, we assess four different transport protocols in a comparative study to examine how well ns2 matches reality. Our tests are all conducted at 100Mb/s over a wide range of delay and router buffer conditions: end-to-end delays from 25ms to 400ms, with end-to-end path buffering of 20% to 100% of the BDP. We find that in our simple configuration, there are significant differences in performance between ns2 and the testbed.
机译:新的传输协议继续代替传输控制协议(TCP)出现。其中许多设计用于解决TCPȁ9的问题;该方法在具有高带宽延迟乘积(BDP)的路径上运行效率低下。为了测试这些新协议,特别是比较地测试它们,并了解它们之间的相互作用,对ns2仿真器的扩展允许在ns2仿真中使用来自Linux内核的真实代码。但是,与相同配置的测试台实验相比,这种配置的性能如何?尽管,有趣的是,研究界内部经常对此类问题发表评论,但尚无研究能够量化特定协议套件之间的差异。在一个比较研究中,我们使用一个简单的测试平台评估了四种不同的传输协议,以检查ns2与现实的匹配程度。我们的测试都是在各种延迟和路由器缓冲条件下以100Mb / s的速度进行的:端到端延迟从25ms到400ms,端到端路径缓冲为BDP的20%到100%。我们发现,在我们的简单配置中,ns2和测试平台之间的性能存在显着差异。

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