Optimizing cell size in Pico-cell networks

Sreenath Ramanath, E. Altman, Vinod Kumar, M. Debbah
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引用次数: 22

Abstract

In this paper, we present a systematic study of the uplink capacity and coverage of pico-cell wireless networks. Both the one dimensional as well as the two dimensional cases are investigated. Our goal is to compute the size of pico-cells that maximizes the spatial throughput density. To achieve this goal, we consider fluid models that allow us to obtain explicit expressions for the interference and the total received power at a base station. We study the impact of various parameters on the performance: the path loss factor, the spatial reuse factor and the receiver structure (matched filter or multiuser detector). We relate the performance of the fluid models to that of the original discrete system and show that the fluid model provides a bound for the discrete one.
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优化微蜂窝网络中的蜂窝大小
本文对微蜂窝无线网络的上行容量和覆盖范围进行了系统的研究。一维情况和二维情况都进行了研究。我们的目标是计算使空间吞吐量密度最大化的微单元的大小。为了实现这一目标,我们考虑流体模型,使我们能够获得基站的干扰和总接收功率的显式表达式。我们研究了各种参数对性能的影响:路径损耗因子、空间复用因子和接收机结构(匹配滤波器或多用户检测器)。我们将流体模型的性能与原始离散系统的性能联系起来,并表明流体模型为离散系统提供了一个边界。
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