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Context Aware Inter-BSS Handoff in IEEE 802.11 Networks: Efficient Resource Utilization and Performance Improvement

机译:IEEE 802.11网络中的上下文感知BSS间切换:有效的资源利用和性能改进

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摘要

IEEE 802.11 has become very popular wireless technology to offer high speed Internet access at public places called the 'Hot-Spots'. This has enabled users to access multimedia and other real time applications using wireless local area networks (WLAN). In IEEE 802.11 WLAN technology, associations between a mobile station and an access point (AP) is controlled by the mobile station, allowing the station to select an AP with the strongest signal in terms of either 'Received Signal Strength Identifier' or 'Signal to Interference and Noise Ratio'. In real time scenarios, the traffic patterns of mobile users are dynamic in nature. This leads to a situation where the traffic loads on the APs are unevenly distributed in the WLAN. Such imbalance in traffic load causes severe degradation in performance of the applications running on the mobile stations associated with the overloaded APs. In this paper, we propose a scheme which dynamically improves the performance of the overloaded APs by handing off some of its associated stations to nearby APs. This handoff decision is taken by an AP in assistance with the mobile stations. The effectiveness of the load distribution through dynamic hand-over in a WLAN is analyzed through theoretical analysis. Simulation results show the overall improvements in terms of delay, throughput and number of stations that an AP can support. The performance improvement in the proposed scheme is also justified through the results obtained from a IEEE 802.11 WLAN testbed.
机译:IEEE 802.11已成为一种非常流行的无线技术,可以在称为“热点”的公共场所提供高速Internet访问。这使用户能够使用无线局域网(WLAN)访问多媒体和其他实时应用程序。在IEEE 802.11 WLAN技术中,移动站和接入点(AP)之间的关联由移动站控制,从而允许该站根据“接收信号强度标识符”或“信号强度”选择信号最强的AP。干扰和噪声比”。在实时场景中,移动用户的流量模式实际上是动态的。这会导致AP上的流量负载在WLAN中分布不均的情况。业务负载的这种不平衡导致在与过载的AP相关联的移动台上运行的应用程序的性能严重下降。在本文中,我们提出了一种方案,该方案通过将过载的一些关联站点移交给附近的AP来动态提高过载AP的性能。该切换决定由AP在移动站的协助下做出。通过理论分析,分析了无线局域网中通过动态切换进行负载分配的有效性。仿真结果显示了AP可以支持的延迟,吞吐量和站点数量方面的总体改进。通过从IEEE 802.11 WLAN测试平台获得的结果,也证明了所提出方案中性能的提高。

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