Extensions of Access-Point Aggregation Algorithm for Large-scale Wireless Local Area Networks

Md. Ezharul Islam, N. Funabiki, T. Nakanishi
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引用次数: 8

Abstract

Recently, many organizations such as universities and companies have deployed wireless local area networks (WLANs) to cover the whole site for ubiquitous network services. In these WLANs, wireless access-points (APs) are often managed independently by different groups such as laboratories or departments. Then, a host may detect signals from multiple APs, which can degrade the communication performance due to radio interferences among them and increase operational costs. Previously, we proposed the AP aggregation algorithm to solve this problem by minimizing the number of active APs through aggregating them using the virtual AP technology . However, our extensive simulations in various instances found that 1) the minimization of active APs sometimes excessively degrades the network performance, and 2) the sequential optimization of host associations does not always reach optimal where slow links are still used. In this paper, we propose two extensions of the AP aggregation algorithm to solve these problems by 1) ensuring the minimum average throughput for any host by adding active APs and 2) further optimizing host associations by changing multiple hosts simultaneously in the host association finalization phase. We verify the effectiveness through simulations in four network instances using the WIMNET simulator.Â
大规模无线局域网接入点聚合算法的扩展
最近,许多组织(如大学和公司)已经部署了无线局域网(wlan)来覆盖整个站点,以提供无处不在的网络服务。在这些无线局域网中,无线接入点(ap)通常由不同的组(如实验室或部门)独立管理。这样,一台主机可能会检测到来自多个ap的信号,ap之间存在无线电干扰,导致通信性能下降,增加运营成本。在此之前,我们提出了AP聚合算法来解决这个问题,通过使用虚拟AP技术对活动AP进行聚合,使活动AP的数量最小化。然而,我们在各种情况下的广泛模拟发现,1)最小化活动ap有时会过度降低网络性能,2)在仍然使用慢速链路的情况下,主机关联的顺序优化并不总是达到最佳。在本文中,我们提出了两个AP聚合算法的扩展来解决这些问题:1)通过添加活动AP来确保任何主机的最小平均吞吐量;2)通过在主机关联结束阶段同时更改多个主机来进一步优化主机关联。通过在四个网络实例中使用WIMNET simulator.Â进行仿真,验证了该方法的有效性
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