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TCP-based Multi Parallel Links Exploiting Packet Re-routing Mechanisms in Diverse Channel Condition

机译:基于TCP的多并行链路在不同通道条件下利用数据包重新路由机制

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This paper takes into account different characteristics of TCP-based MIMO sub-channels, including bit error rate (BER) and data rate, in addition to exploiting these differences by implementing sub-channel re-routing methods to improve overall goodput. We show that even simple packet routing mechanisms can provide an overall performance improvement when MIMO sub-channels have unequal error rate. Two scenario models are created: the first one is called a dual parallel-link scenario model where two nodes communicate over two wireless sub-channels, and the second scenario is a more interesting model named the quad-parallel independent link model (Quad-PILM). Simulation are derived for both models, enhanced with two novel switching methods SWS and PLD and two retry scenarios set up: RDL and RRL, in which showing how re-transmissions will be carried out. We investigate the system in the light of goodput under various channel differences. Based on our analysis, we determine the degree of improvement of our proposed models, and show that these techniques may be advantageous for multiple antenna systems. Index Terms ?? Channel difference, MIMO sub-channels, packet re-routing, switching methods.
机译:本文考虑了基于TCP的MIMO子通道的不同特征,包括误码率(BER)和数据速率,除了利用这些差异来利用这些差异,实现子信道重新路由方法以提高整体净化。我们表明,即使是简单的数据包路由机制也可以在MIMO子信道具有不等误差率时提供整体性能改进。创建了两个场景模型:第一个是一个双行链路方案模型,其中两个节点通过两个无线子通道通信,第二个方案是一个名为四平行独立链路模型的更有趣的模型(Quad-Pilm )。模拟用于两种型号,增强了两种新颖的切换方法SWS和PLD以及设置的两个重试场景:RDL和RRL,其中显示将如何执行重新传输。我们根据各种渠道差异调查该系统的净化。基于我们的分析,我们确定了我们所提出的模型的改进程度,并表明这些技术可能对多个天线系统有利。索引条款??频道差异,MIMO子通道,数据包重新路由,切换方法。

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