Modeling and analysis of coexisting multiple radio access technologies in heterogeneous wireless networks

Chun-Hung Liu, Li-Chun Wang
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引用次数: 4

Abstract

This paper introduces a stochastic geometry framework for modeling and analysis of a heterogeneous wireless network with cellular and WiFi radio access technologies (RATs). Our focus here is to study the coexistence performance of the cellular and WiFi subnetworks in the WiFi frequency spectrum (band). The cellular subnetwork consists of macro and small cell access points (APs) with WiFi spectrum access. We first define the coexisting success probability in the WiFi frequency band as the sum of the density-weighted success probabilities of two subnetworks. The closed-form coexisting success probability is found and it is shown to have the concavity over the number of channels in the WiFi frequency band. The optimal deployment densities of small cell and WiFi access points (APs) that maximize the coexisting success probability are shown to exist and found under the derived constraint on network parameters. We then define the coexisting throughput as the sum of the throughputs of the two subnetworks and claim its unique maximum can be attained by the appropriate setting of AP densities. Numerical results indicate that the coexisting throughput is significantly higher than the throughput when only WiFi APs can access the WiFi frequency band.
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异构无线网络中共存的多种无线接入技术建模与分析
本文介绍了一个随机几何框架,用于对具有蜂窝和WiFi无线接入技术(rat)的异构无线网络进行建模和分析。我们的重点是研究蜂窝网络和WiFi子网在WiFi频谱(频带)内的共存性能。蜂窝子网由具有WiFi频谱接入的宏蜂窝接入点和小蜂窝接入点组成。我们首先将WiFi频段内共存成功概率定义为两个子网的密度加权成功概率之和。找到了封闭形式的共存概率,其在WiFi频带的信道数上呈凹凸性。在推导出的网络参数约束下,发现存在使小蜂窝和WiFi接入点(ap)共存成功概率最大化的最优部署密度。然后,我们将共存吞吐量定义为两个子网吞吐量的总和,并声称通过适当设置AP密度可以获得其唯一最大值。数值结果表明,共存吞吐量明显高于只有WiFi ap可以访问WiFi频段时的吞吐量。
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