Overload Protection for IEEE 802.11 Cells

H. Munoz, Ignacio Más Ivars, G. Karlsson
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引用次数: 3

Abstract

This paper presents a distributed admission control for the distributed coordination function of IEEE 802.11 wireless LANs that limits the risk of congestion collapse due to a high arrival rate of flows. This control scheme requires no modification to the current distributed coordination function; it works by performing a short, non-disturbing probe that estimates the MAC service time. The flow is admitted if the estimate is below a threshold. We show how the threshold may be adjusted dynamically to maintain an average packet loss rate below a configurable limit. We show via extensive simulations that the admission control avoids congestion due to flow arrivals and that it maintains the loss probability below the given threshold regardless of the offered load or number of stations. Our simulations also analyze the main drawback of our scheme: a reduction in the link utilization. The admission control efficiently protects cells from overload and it may offer soft QoS guarantees to multimedia flows without the need for scheduling or polling mechanisms in IEEE 802.11
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IEEE 802.11 cell的过载保护
针对IEEE 802.11无线局域网的分布式协调功能,提出了一种分布式接纳控制方法,以限制由于流量到达率高而导致拥塞崩溃的风险。该控制方案不需要修改现有的分布式协调函数;它的工作原理是执行一个简短的、不受干扰的探测来估计MAC服务时间。如果估计低于阈值,则允许流。我们展示了如何动态调整阈值以保持平均丢包率低于可配置限制。我们通过大量的模拟表明,接纳控制避免了由于流到达造成的拥塞,并且无论提供的负载或站点数量如何,它都将损失概率保持在给定阈值以下。我们的模拟还分析了该方案的主要缺点:链路利用率降低。允许控制有效地保护单元免受过载,它可以为多媒体流提供软QoS保证,而不需要IEEE 802.11中的调度或轮询机制
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