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Rate-Based Active Queue Management for TCP Flows over Wired and Wireless Networks

机译:基于速率的活动队列管理,用于有线和无线网络上的TCP流

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Current active queue management (AQM) and TCP protocol are designed and tuned to work well on wired networks where packet loss is mainly due to network congestion. In wireless networks, however, communication links suffer from significant transmission bit errors and handoff failures. As a result, the performance of TCP flows is significantly degraded. To mitigate this problem, we analyze existing AQM schemes and propose a rate-based exponential AQM (REAQM) scheme. The proposed REAQM scheme uses the input rate as a primary metric and queue length as the secondary metric. The objectives of REAQM are to stabilize networks with low packet loss, low packet delay, and high link utilization regardless the dynamic of network conditions. We prove the global asymptotic stability of the equilibrium based on Lyapunov theory. Simulation results suggest that REAQM is capable of performing well for TCP flows over both wired and wireless networks, and has comparable implementation complexity as other AQM schemes.
机译:当前的活动队列管理(AQM)和TCP协议经过设计和调整,可在有线网络中很好地工作,在有线网络中,数据包丢失主要是由于网络拥塞造成的。然而,在无线网络中,通信链路遭受严重的传输位错误和切换失败。结果,TCP流的性能大大降低。为了缓解此问题,我们分析了现有的AQM方案并提出了一种基于速率的指数AQM(REAQM)方案。提出的REAQM方案使用输入速率作为主要指标,使用队列长度作为辅助指标。 REAQM的目标是稳定网络,使其具有低丢包率,低数据包延迟和高链路利用率,而不受网络条件的影响。我们基于李雅普诺夫理论证明了平衡点的全局渐近稳定性。仿真结果表明,REAQM能够很好地应对有线和无线网络上的TCP流,并具有与其他AQM方案相当的实现复杂性。

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