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On the Capacity of Downlink Multi-Hop Heterogeneous Cellular Networks

机译:下行多跳异构蜂窝网络容量研究

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Multi-hop heterogeneous cellular networks (MHCNs) consist of conventional macro cellular networks overlaid with an irregular deployment of low-power base stations (BSs), where the communication between BSs and mobile users can be established through a single hop or multiple hops. By modeling different kinds of randomly located BSs as $K$ tiers of independent homogeneous Poisson Point Processes, we first explore the capacity of downlink MHCNs and derive the expression of capacity under Rayleigh fading channels. Particularly, the capacity gain achieved by cell splitting and multi-hop relaying is quantified for the first time. We then study the effects of BS density, transmit power, and signal-to-interference-plus-noise-ratio (SINR) threshold on the capacity of MHCNs. More importantly, we obtain the spectral efficiency enhancement condition under which the increase of BS density and transmit power improve the spectral efficiency, thereby enhancing the capacity. One interesting observation is that at a given SINR threshold, the capacity increases with BS density when all the tiers have the same SINR threshold. Moreover, the capacity of some special networks (i.e., heterogeneous cellular networks, multi-hop cellular networks, and conventional cellular networks) are derived directly by specializing some system parameters in our results. Finally, numerical studies and simulations are conducted to validate our analysis.
机译:多跳异构蜂窝网络(MHCN)由覆盖有不规则部署的低功率基站(BS)的常规宏蜂窝网络组成,其中BS与移动用户之间的通信可以通过单跳或多跳建立。通过将各种随机定位的BS建模为独立齐次Poisson点过程的 $ K $ 层,我们首先探索下行MHCN的容量并推导瑞利衰落信道下的容量表达。特别是,第一次量化了通过小区分裂和多跳中继实现的容量增益。然后,我们研究了BS密度,发射功率和信号干扰加噪声比(SINR)阈值对MHCN容量的影响。更重要的是,我们获得了频谱效率增强的条件,在该条件下,BS密度和发射功率的增加提高了频谱效率,从而提高了容量。一个有趣的观察是,在给定的SINR阈值下,当所有层都具有相同的SINR阈值时,容量随BS密度的增加而增加。此外,通过在我们的结果中对某些系统参数进行专门化,可以直接得出某些特殊网络(即,异构蜂窝网络,多跳蜂窝网络和常规蜂窝网络)的容量。最后,进行了数值研究和仿真以验证我们的分析。

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