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Integration Gain of Heterogeneous WiFi/WiMAX Networks

机译:异构WiFi / WiMAX网络的集成增益

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We study the integrated WiFi/WiMAX networks, where users are equipped with dual-radio interfaces that can connect to either a WiFi or a WiMAX network. Previous research on integrated heterogeneous networks (e.g., WiFi/cellular) usually considers one network as the main and the other as the auxiliary. The performance of the integrated network is compared with the "mainȁD; network. The gain is apparently due to the additional resources from the auxiliary network. In this study, we are interested in integration gain that comes from the better utilization of the resource rather than the increase of the resource. The heterogeneity of the two networks is the fundamental reason for the integration gain. To quantify it, we design a generic framework that supports different performance objectives. We focus on the max-min throughput fairness in this work and also briefly cover the proportional fairness metric. We first prove that it is NP-hard to achieve integral max-min throughput fairness, then propose a heuristic algorithm, which provides two-approximation to the optimal fractional solution. Simulation results demonstrate significant integration gain from three sources, namely, spatial multiplexing, multinetwork diversity, and multiuser diversity. For the proportional fairness metric, we derive the formulation and propose a heuristic algorithm, which shows satisfactory performance when compared with the optimal solution.
机译:我们研究了集成的WiFi / WiMAX网络,其中用户配备了可以连接WiFi或WiMAX网络的双射频接口。先前对集成异构网络(例如WiFi /蜂窝网络)的研究通常将一个网络作为主要网络,将另一个网络作为辅助网络。将集成网络的性能与“ mainD”网络进行比较。显然,该增益是由于辅助网络带来的额外资源。在本研究中,我们对集成增益的关注是由于更好地利用资源而不是两个网络的异质性是获得集成增益的根本原因,为了量化它,我们设计了一个支持不同性能目标的通用框架,在此工作中我们关注最大-最小吞吐量公平性,并且简要介绍比例公平度量,首先证明要实现最大-最小吞吐量公平是NP难的,然后提出一种启发式算法,为最优分数解提供两个近似值,仿真结果表明从三个方面获得了显着的积分增益来源,即空间复用,多网络分集和多用户分集对于比例公平度量,我们推导公式并提出启发式算法,与最佳解决方案相比,该算法表现出令人满意的性能。

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