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On Dynamic Load Distribution Algorithms for Multi-AP WLAN under Diverse Conditions

机译:不同条件下多AP WLAN的动态负载分配算法研究

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Future wireless networks will enjoy ubiquitous connectivity by taking advantage of the IP core convergence which is seen as the lingua franca of heterogeneous access networks ecosystem. It is expected that the prevalence of WLAN and the advent of IEEE 802.11n standard will continue to offer compelling opportunities and therefore be considered as one of the de-facto wireless access network. However, it is known that wireless network conditions in general are diverse owing to both traffic and wireless channel variations. This raises the importance of exploiting diversity across a multiple access points (multi-AP) WLAN, which requires an advanced network control mechanism to effectuate uniform load distribution, so that QoS of users and composite capacity can be improved. Although various load distribution algorithms for WLAN have been investigated in literature, there is a lack of performance comparison between different algorithms. In this paper, we present a comparison of three dynamic load distribution algorithms, viz. predictive load balancing (PLB), predictive QoS balancing (PQB) and reactive QoS balancing (RQB) for infrastructure-based WLAN with DCF access mechanism based on OPNET simulations.
机译:未来的无线网络将通过利用IP核心融合而享有无处不在的连接性,这种融合被视为异构接入网络生态系统的通用语言。预计WLAN的普及和IEEE 802.11n标准的出现将继续提供引人注目的机会,因此被认为是事实上的无线接入网络之一。但是,众所周知,由于业务量和无线信道的变化,通常无线网络条件是多种多样的。这提高了利用跨多个接入点(multi-AP)WLAN的多样性的重要性,这需要先进的网络控制机制以实现均匀的负载分配,从而可以提高用户的QoS和复合容量。尽管在文献中已经研究了用于WLAN的各种负载分配算法,但是在不同算法之间缺乏性能比较。在本文中,我们将对三种动态负载分配算法进行比较。基于OPNET模拟的具有DCF访问机制的基于基础架构的WLAN的预测负载平衡(PLB),预测QoS平衡(PQB)和反应式QoS平衡(RQB)。

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