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Anomaly-aware IP Scheduler with Admission Control for 802.11n Base Station

机译:具有准入控制的802.11n基站的异常感知IP调度程序

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IEEE 802.11n standard has fulfilled the promise of improved performance when compared to the previous generation of Wireless Local Area Networks (WLANs) with the possibility of physical transmission rate up to 600Mbps. But the well known performance anomaly of 802.11 still remains an open issue. A mobile station tends to change its modulation and coding scheme and transmit at lower bit rate due to the signal fading and interference. Besides, the 802.11 commercial devices adopt a simple First-In-First-Out (FIFO) scheduler without isolating the traffic flows addressed to different destinations. These have lead to a problem: whenever one or more stations transmit at lower bit rate, the performance of all the stations is heavily degraded. Our experimental results have pinpointed this problem. To counteract this problem, we propose an easy to deploy and portable solution to be implemented in the 802.11n base station, known as anomaly-aware IP scheduler with admission control. This cross-layer approach requires no modification to the current 802.11 standard and runs on top of the Linux kernel. The experimental results have shown the feasibility of our solution in minimizing the performance anomaly problem.
机译:与上一代无线局域网(WLAN)相比,IEEE 802.11n标准已经实现了提高性能的承诺,并具有高达600Mbps的物理传输速率。但是众所周知的802.11性能异常仍然是一个未解决的问题。由于信号衰落和干扰,移动站倾向于改变其调制和编码方案并以较低的比特率进行发送。此外,802.11商业设备采用简单的先进先出(FIFO)调度程序,而不会隔离发往不同目的地的流量。这些导致了一个问题:每当一个或多个站以较低的比特率传输时,所有站的性能都会大大降低。我们的实验结果指出了这个问题。为了解决此问题,我们提出了一种易于部署且可移植的解决方案,该解决方案将在802.11n基站中实施,称为具有准入控制的异常感知IP调度程序。这种跨层方法不需要修改当前的802.11标准,并且可以在Linux内核之上运行。实验结果表明了我们的解决方案在最小化性能异常问题方面的可行性。

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