Information theoretic capacity of the cellular uplink - average path loss approximation

E. Katranaras, M. Imran, C. Tzaras
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Abstract

In this paper we investigate the information theoretic capacity of the uplink of a cellular system where all base station receivers jointly decode the received signals (ldquohyper-receiverrdquo). Considering a distance depended power-law path loss and a more realistic Rician fading environment, we model a variable cell density network with geographically distributed user terminals. Multiple tiers of interference are considered and using an average path loss approximation model the analytical result for the per cell sum-rate capacity is found. We examine the various parameters that are affecting the capacity of the system. Especially the effect of the user distribution across the cells and the density of the cells in the cellular system is investigated. We validate the numerical solutions with Monte Carlo simulations for random fading realizations and we interpret the results for the real-world systems.
蜂窝上行链路的信息理论容量——平均路径损耗近似
本文研究了所有基站接收器共同解码接收信号的蜂窝系统上行链路的信息理论容量(ldquosuperreceiverrdquo)。考虑到距离依赖的幂律路径损耗和更现实的衰落环境,我们建立了具有地理分布的用户终端的变小区密度网络模型。在考虑多层干扰的情况下,采用平均路径损耗近似模型,得到了单单元和速率容量的解析结果。我们检查影响系统容量的各种参数。重点研究了蜂窝系统中用户分布和蜂窝密度的影响。我们用蒙特卡罗模拟验证了随机衰落实现的数值解,并对实际系统的结果进行了解释。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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