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Experiences with WM: A centralised scheduling approach for performance management of IEEE 802.11 wireless LANs

机译:WM的经验:用于IEEE 802.11无线LAN性能管理的集中式调度方法

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In our earlier work ([1]) we proposed WLAN Manager (orWM) a centralised controller for QoS management of infrastructure WLANs based on the IEEE 802.11 DCF standards. The WM approach is based on queueing and scheduling packets in a device that sits between all traffic flowing between the APs and the wireline LAN, requires no changes to the AP or the STAs, and can be viewed as implementing a “Split-MAC” architecture. The objectives of WM were to manage various TCP performance related issues (such as the throughput “anomaly” when STAs associate with an AP with mixed PHY rates, and upload-download unfairness induced by finite AP buffers), and also to serve as the controller for VoIP admission control and handovers, and for other QoS management measures. In this paper we report our experiences in implementing the proposals in [1]: the insights gained, new control techniques developed, and the effectiveness of the WM approach in managing TCP performance in an infrastructure WLAN. We report results from a hybrid experiment where a physical WM manages actual TCP controlled packet flows between a server and clients, with the WLAN being simulated, and also from a small physical testbed with an actual AP.
机译:在我们的早期工作([1])中,我们提出了WLAN管理器(orWM),它是一个基于IEEE 802.11 DCF标准的用于基础设施WLAN的QoS管理的集中控制器。 WM方法基于对设备中的数据包进行排队和调度,该设备位于AP和有线LAN之间的所有流量之间,无需更改AP或STA,可以被视为实现“ Split-MAC”架构。 WM的目标是管理各种与TCP性能相关的问题(例如,当STA与具有混合PHY速率的AP关联时的吞吐量“异常”,以及由有限AP缓冲区引起的上载下载不公平),并且还充当控制器用于VoIP准入控制和切换,以及其他QoS管理措施。在本文中,我们报告了在实施[1]中的建议时的经验:获得的见解,开发的新控制技术以及WM方法在基础设施WLAN中管理TCP性能的有效性。我们报告了一个混合实验的结果,在该实验中,物理WM通过模拟WLAN来管理服务器和客户端之间实际的TCP控制的数据包流,还报告了带有实际AP的小型物理测试台。

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