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Achieving MAC-Layer Fairness in CSMA/CA Networks

机译:在CSMA / CA网络中实现MAC层公平性

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摘要

We demonstrate that CSMA/CA networks, including IEEE 802.11 networks, exhibit severe fairness problem in many scenarios, where some hosts obtain most of the channel's bandwidth while others starve. Most existing solutions require nodes to overhear transmissions made by contending nodes and, based on the overheard information, adjust local rates to achieve fairness among all contending links. Their underlying assumption is that transmissions made by contending nodes can be overheard. However, this assumption holds only when the transmission range is equal to the interference range, which is not true in reality. As our study reveals, the overhearing-based solutions, as well as several nonoverhearing AIMD solutions, cannot achieve MAC-layer fairness in various settings. We propose a new rate control protocol, called Proportional Increase Synchronized multiplicative Decrease (PISD). Without relying on overhearing, it provides fairness in CSMA/CA networks, particularly IEEE 802.11 networks, by using only local information and performing localized operations. It combines several novel rate control mechanisms, including synchronized multiplicative decrease, proportional increase, and background transmission. We prove that PISD converges and achieves (weighted) fairness. We further introduce Queue Spreading (QS) to achieve MAC-layer fairness when there are multiple contention groups, in which case PISD will fail.
机译:我们证明CSMA / CA网络(包括IEEE 802.11网络)在许多情况下都表现出严重的公平性问题,其中某些主机获得了大部分信道带宽,而另一些则挨饿了。大多数现有解决方案都要求节点监听竞争节点进行的传输,并根据监听到的信息调整本地速率,以实现所有竞争链路之间的公平性。他们的基本假设是,竞争节点进行的传输可能会被窃听。但是,该假设仅在传输范围等于干扰范围时成立,实际上是不正确的。正如我们的研究表明的那样,基于监听的解决方案以及几种非监听的AIMD解决方案无法在各种情况下实现MAC层公平性。我们提出了一种新的速率控制协议,称为比例增加同步乘法减少(PISD)。无需依赖监听,它仅通过使用本地信息并执行本地化操作即可在CSMA / CA网络(尤其是IEEE 802.11网络)中提供公平性。它结合了几种新颖的速率控制机制,包括同步乘法减少,比例增加和背景传输。我们证明PISD收敛并达到(加权)公平性。当存在多个争用组时,我们进一步引入队列扩展(QS)以实现MAC层公平性,在这种情况下PISD将失败。

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