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Bandwidth provisioning in infrastructure-based wireless networks employing directional antennas

机译:使用定向天线的基于基础架构的无线网络中的带宽配置

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摘要

Motivated by the widespread proliferation of wireless networks employing directional antennas, we study the problem of provisioning bandwidth in such networks. Given a set of subscribers and one or more access points possessing directional antennas, we formalize the problem of orienting these antennas in two fundamental settings: (i) subscriber-centric, where the objective is to fairly allocate bandwidth among the subscribers and (ii) provider-centric, where the objective is to maximize the revenue generated by satisfying the bandwidth requirements of subscribers. For both the problems, we first design algorithms for a network with only one access point working under the assumption that the number of antennas does not exceed the number of non-interfering channels. Using the well-regarded lexicographic max-min fair allocation as the objective for a subscriber-centric network, we present a dynamic programming algorithm that achieves the fairest allocation. For a provider-centric network, the allocation problem turns out to be NP-hard. We present a greedy heuristic-based algorithm that guarantees almost half of the optimum revenue. We later enhance both these algorithms to operate in more general networks with multiple access points and no restrictions on the relative numbers of antennas and channels. A simulation-based evaluation using OPNET demonstrates the efficacy of our approaches and provides us further insights into these problems.
机译:由于采用定向天线的无线网络的广泛普及,我们研究了在此类网络中配置带宽的问题。给定一组用户和一个或多个具有定向天线的接入点,我们将这些天线的定向问题定为两个基本设置:(i)以用户为中心,目的是在用户之间公平分配带宽;(ii)以提供商为中心,其目的是通过满足用户的带宽需求来最大化收益。对于这两个问题,我们首先为仅具有一个接入点的网络设计算法,并假设天线的数量不超过无干扰信道的数量。使用广受赞誉的字典最大最大公平分配作为以用户为中心的网络的目标,我们提出了一种动态规划算法,可以实现最公平的分配。对于以提供商为中心的网络,分配问题原来是NP难题。我们提出了一种基于贪婪启发式的算法,该算法可保证将近一半的最佳收益。后来,我们将这两种算法都进行了增强,使其可以在具有多个接入点的更通用的网络中运行,并且对天线和信道的相对数量没有限制。使用OPNET进行的基于仿真的评估证明了我们方法的有效性,并为我们提供了对这些问题的进一步见解。

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