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Experimental Evaluation of Starved AP Identification and Management Schemes in Mobile Cooperative WLAN System toward 5G

机译:移动协作WLAN系统中面向5G的饥饿AP识别和管理方案的实验评估

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Throughput starvation, which occurs due to the well-known exposed/hidden terminal problem in CSMA/CA based channel access mechanisms, will be a critical problem for dense wireless LAN systems. To address this problem, we previously proposed schemes that identify and manage starved devices by monitoring the beacon signals transmitted by access points (APs) and showed that they can identify low throughput devices and have potential to improve WLAN system throughput. This paper describes experimental results obtained for schemes that identify starved APs and manage their channels. Numerous experiments verified that the schemes can identify APs that have quite low throughput as starved APs and that management can reduce the low throughput APs in real environments. We also indicate that it is necessary to consider beacon transmission delay fluctuation when determining the threshold used for identifying starved APs in cases such as the surrounding environment fluctuating in a short period.
机译:由于基于CSMA / CA的信道访问机制中众所周知的暴露/隐藏终端问题而导致的吞吐量不足,对于密集型无线LAN系统将是一个关键问题。为了解决这个问题,我们先前提出了通过监视由接入点(AP)传输的信标信号来识别和管理饥饿设备的方案,并表明它们可以识别低吞吐量的设备并具有提高WLAN系统吞吐量的潜力。本文介绍了针对识别饥饿AP并管理其信道的方案获得的实验结果。大量实验证明,该方案可以将吞吐量相当低的AP识别为饥饿的AP,并且管理可以减少实际环境中的吞吐量不高的AP。我们还指出,在确定用于识别饥饿AP的阈值时(例如周围环境在短期内波动),有必要考虑信标传输延迟波动。

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