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On-Line AP Association Algorithms for 802.11n WLANs with Heterogeneous Clients

机译:具有异构客户端的802.11n WLAN的在线AP关联算法

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As the latest amendment of IEEE 802.11 standard, 802.11n allows a maximum raw data rate as high as 600 Mbps, making it a desirable candidate for wireless local area network (WLAN) deployment. In typical deployment, the coverage areas of nearby access points (APs) usually overlap with each other to provide satisfactory coverage and seamless mobility support. Clients tend to associate (connect) to the AP with the strongest signal strength, which may lead to poor client throughput and overloaded APs. Although a number of AP association schemes have been proposed for IEEE 802.11 WLANs in the literature, the challenges brought by the new features in 802.11n have not been thoroughly studied nor the impact of legacy 802.11a/b/g clients in 802.11n WLANS on AP association. To fill in this gap, in this paper, we explore AP association for 802.11n with heterogeneous clients (802.11a/b/g). We first present a bi-dimensional Markov model to estimate the uplink and downlink throughput of clients and formulate AP association into an optimization problem, aiming at providing each client a bandwidth proportional to its usable data rate. Based on this Markov model, we propose an on-line AP association algorithm under the condition that each client can acquire timely information of all clients associated with nearby APs. Furthermore, for WLANs with densely deployed APs, we provide another on-line AP association algorithm with lower complexity, which takes full advantage of 802.11n transmissions by simply associating different types of clients with different APs. We have conducted extensive simulations and experiments to validate the proposed algorithms. The results show that our algorithms can significantly improve both 802.11n throughput and aggregated network throughput under various network scenarios, compared to previous AP association schemes. Our experiments also confirm the effectiveness of the algorithms in enhancing network throughput, maintaining proportional fairness amon- clients, and balancing load among APs.
机译:作为IEEE 802.11标准的最新修订,802.11n允许的最大原始数据速率高达600 Mbps,使其成为无线局域网(WLAN)部署的理想选择。在典型部署中,附近接入点(AP)的覆盖区域通常会相互重叠,以提供令人满意的覆盖范围和无缝移动支持。客户端倾向于以最强的信号强度关联(连接)到AP,这可能导致客户端吞吐量下降和AP过载。尽管在文献中已经提出了许多针对IEEE 802.11 WLAN的AP关联方案,但尚未全面研究802.11n中新功能所带来的挑战,也没有充分研究802.11n WLANS中传统802.11a / b / g客户端的影响。 AP协会。为了填补这一空白,在本文中,我们探索了与异构客户端(802.11a / b / g / n)的802.11n的AP关联。我们首先提出一个二维马尔可夫模型来估计客户端的上行链路和下行链路吞吐量,并将AP关联公式化为优化问题,旨在为每个客户端提供与其可用数据速率成比例的带宽。基于此马尔可夫模型,我们提出了一种在线AP关联算法,其条件是每个客户端都可以及时获取与附近AP关联的所有客户端的信息。此外,对于具有密集部署的AP的WLAN,我们提供了另一种复杂度较低的在线AP关联算法,该算法通过简单地将不同类型的客户端与不同的AP关联来充分利用802.11n传输。我们进行了广泛的仿真和实验,以验证所提出的算法。结果表明,与以前的AP关联方案相比,我们的算法可以在各种网络场景下显着提高802.11n吞吐量和聚合网络吞吐量。我们的实验还证实了该算法在增强网络吞吐量,保持比例公平的公平客户端以及平衡AP之间的负载方面的有效性。

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