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On the performance of traffic equalizers on heterogeneous communication links

机译:关于异构通信链路上流量均衡器的性能

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Aggregating the bandwidth of multiple low-cost physical communication links to form a single, higher capacity logical link is a common and inexpensive approach to increasing network performance. Aggregating or bonding links has traditionally been used in relatively static settings such as LAN-WAN interconnection, where the component links to be aggregated were typically identical (e.g., multiple T1 links) with very similar communication characteristics. However the emergence of multi-homed hosts and diverse access technologies (e.g., cable modem, wireless DSL) compel us to study the performance of aggregating the bandwidth of increasingly heterogeneous links.In this paper we examine the end-to-end performance of a single TCP connection with packets transmitted over multiple heterogeneous links. We describe a testbed we constructed, present empirical results, and introduce a new Linux-based traffic scheduler called wTEQL that we have developed to optimize the performance of TCP over multipleheterogeneous communication links. Finally, we present a novel analytical approach based on linear systems theory to characterize the performance of TCP over an inverse multiplexed channel with WRR scheduling over heterogeneous links. We believe that our model is the first to demonstrate analytically how TCP throughput on two links with a poorly matched packet scheduling policy can fall below the achievable throughput of the slower of the two links when that link is used alone.1
机译:聚集多个低成本物理通信链路的带宽以形成单个更高容量的逻辑链路是提高网络性能的一种常见且廉价的方法。传统上,聚合或绑定链接用于相对静态的设置中,例如LAN-WAN互连,其中要聚合的组件链接通常具有相同的通信特性(例如,多个T1链接)。但是,多宿主主机和各种访问技术(例如,电缆调制解调器,无线DSL)的出现迫使我们研究聚集越来越多的异构链路的带宽的性能。单个TCP连接,并通过多个异构链接传输数据包。我们描述了我们构建的测试平台,展示了经验结果,并介绍了一种新的基于Linux的流量调度程序,称为 wTEQL ,我们已开发该调度程序来优化多异构通信链路上TCP的性能。最后,我们提出了一种基于线性系统理论的新颖分析方法,以通过异构链路上的WRR调度来表征反向多路复用信道上TCP的性能。我们相信,我们的模型是第一个分析性地演示具有不匹配的数据包调度策略的两条链路上的TCP吞吐量如何低于单独使用该两条链路时,较慢的两条链路可实现的吞吐量的方法。 1

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