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Joint AP Association and Bandwidth Allocation Optimization Algorithm in High-Dense WLANs

机译:高密度WLAN中的联合AP关联和带宽分配优化算法

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摘要

Regarding access point (AP) overload and performance anomaly which is caused by mobile terminals with different bitrates, a joint AP association and bandwidth allocation optimization algorithm is presented in this paper. Meanwhile, load balancing and proportional fairness are analyzed and formulated as an optimization model. Then, we present a Fair Bandwidth Allocation algorithm based on clients’ Business Priority (FBA-BP), which allocates bandwidth based on the bandwidth demand of clients and their business priority. Furthermore, we propose a Categorized AP Association algorithm based on clients’ demands (CAA-BD), which classifies APs by different types of clients and chooses an optimal associating AP for a new client according to AP categories and the aggregated demand transmission time that are calculated by the FBA-BP algorithm. The CAA-BD can achieve load balance and solve the performance anomaly caused by multi-rate clients coexisting. The simulation results show that our proposed algorithm obtains significant performance in terms of AP utilization, throughput, transmission delay and channel fairness in different client density levels compared with the categorized and Strong Signal First (SSF) algorithms.
机译:针对不同比特率的移动终端造成的接入点过载和性能异常,提出了一种联合的AP关联和带宽分配优化算法。同时,分析了负载均衡和比例公平性,并将其作为优化模型。然后,我们提出一种基于客户业务优先级(FBA-BP)的公平带宽分配算法,该算法根据客户的带宽需求及其业务优先级分配带宽。此外,我们提出了一种基于客户需求的AP分类关联算法(CAA-BD),该算法根据不同类型的客户对AP进行分类,并根据AP类别和总的需求传输时间为新客户选择最佳的关联AP。由FBA-BP算法计算得出。 CAA-BD可以实现负载均衡,解决多速率客户端并存导致的性能异常。仿真结果表明,与分类和强信号优先(SSF)算法相比,我们提出的算法在不同客户端密度级别的AP利用率,吞吐量,传输延迟和信道公平性方面均具有显着性能。

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