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Asymptotic Spectral Efficiency of the Uplink in Spatially Distributed Wireless Networks with Multi-Antenna Base Stations

机译:具有多天线基站的空间分布式无线网络中上行链路的渐近频谱效率

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摘要

The spectral efficiency of a representative uplink of a given length, in interference-limited, spatially-distributed wireless networks with hexagonal cells, simple power control, and multiantenna linear Minimum-Mean-Square-Error receivers is found to approach an asymptote as the numbers of base-station antennas N and wireless nodes go to infinity. An approximation for the area-averaged spectral efficiency of a representative link (averaged over the spatial base-station and mobile distributions), for Poisson distributed base stations, is also provided. For large N, in the interference-limited regime, the area-averaged spectral efficiency is primarily a function of the ratio of the product of N and the ratio of base-station to wireless-node densities, indicating that it is possible to scale such networks by linearly increasing the product of the number of base-station antennas and the relative density of base stations to wireless nodes, with wireless-node density. The results are useful for designers of wireless systems with high inter-cell interference because it provides simple expressions for spectral efficiency as a function of tangible system parameters like base-station and wireless-node densities, and number of antennas. These results were derived combining infinite random matrix theory and stochastic geometry.
机译:发现在具有六角形小区,简单功率控制和多天线线性最小均方误差接收机的受干扰限制,空间分布的无线网络中,给定长度的代表性上行链路的频谱效率接近渐近线基站天线N和无线节点的数量达到无穷大。还提供了Poisson分布式基站的代表性链路(在空间基站和移动分布上平均)的区域平均频谱效率的近似值。对于较大的N,在干扰受限的情况下,面积平均频谱效率主要是N乘积与基站与无线节点密度之比的函数,这表明可以扩展通过线性增加基站天线数量与基站相对于无线节点的相对密度(具有无线节点密度)的乘积来建立网络。该结果对于具有高小区间干扰的无线系统的设计人员很有用,因为它提供了频谱效率的简单表达式,频谱效率是有形系统参数(如基站和无线节点密度以及天线数量)的函数。这些结果是结合无限随机矩阵理论和随机几何得出的。

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