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Latency-based WiFi congestion control in the air for dense WiFi networks

机译:无线网络中基于延迟的WiFi拥塞控制

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WiFi has become the primary method to access the Internet. However, the WiFi-hop latency, particularly in dense-WiFi environments, is far from satisfactory [1], to support delay-sensitive applications such as Web browsing and VoIP. The WiFi latency mainly comes from two kinds of queues: the host queue and the distributed queue, which is caused by CSMA/CA mechanism when multiple nodes contend for the channel. While the host queue can be easily bypassed using priority scheduling at end-host, the distributed queue is not. Previously, IEEE 802.11e tries to provide priorities in this distributed queue by adjusting the MAC layer parameters, but it does not scale when there are increasing number of delay-sensitive flows. In this paper, we propose and design QAir, a practical solution to reduce WiFi latency of delay-sensitive flows in dense WiFi networks. QAir takes a different approach to transfer this distributed queue to host queue. Consequently, the delay-sensitive flows can bypass the entire queue and their latency can be greatly reduced. QAir works in a distributed manner with no centralized scheduler. We have implemented QAir on commodity WiFi devices. Experimental results show that, compared to the 802.11 DCF baseline, QAir can reduce the average WiFi-hop latency of delay-sensitive flows by 50-75%.
机译:WiFi已成为访问Internet的主要方法。但是,WiFi跳时延(尤其是在密集WiFi环境中)远远不能令人满意,无法支持对延迟敏感的应用程序,例如Web浏览和VoIP。 WiFi延迟主要来自两种队列:主机队列和分布式队列,这是由多个节点争夺信道时的CSMA / CA机制引起的。虽然可以使用终端主机上的优先级调度轻松地绕过主机队列,但分布式队列却不能。以前,IEEE 802.11e试图通过调整MAC层参数在此分布式队列中提供优先级,但是当对延迟敏感的流的数量不断增加时,它就无法扩展。在本文中,我们提出并设计了QAir,这是一种减少密集型WiFi网络中延迟敏感流的WiFi延迟的实用解决方案。 QAir采用另一种方法将此分布式队列传输到主机队列。因此,对延迟敏感的流可以绕过整个队列,并且可以大大减少其延迟。 QAir以分布式方式工作,没有集中式调度程序。我们已经在商用WiFi设备上实施了QAir。实验结果表明,与802.11 DCF基准相比,QAir可以将延迟敏感流的平均WiFi跳时延迟降低50%至75%。

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