Cell breathing, sectorization and densification in cellular networks

J. Kélif, M. Coupechoux
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引用次数: 33

Abstract

In this paper, we establish a closed form formula of the other-cell interference factor f for omni-directional and sectored cellular networks. That formula is based on a fluid model that approximates the discrete base stations (BS) entities by a continuum of transmitters which are spatially distributed in the network. Simulations show that the obtained closed-form formula is a very good approximation, even for the traditional hexagonal network. From f, we are able to derive the outage probability on the downlink as a function of the mobile density and the coverage range. From a maximum acceptable outage probability, we can deduce the link between cell coverage and mobile density and thus highlight with a new, easy and fast method the notion of cell breathing. At last, we show how an operator can use this approach in order to evaluate the impact of sectorization or BS densification on the cell coverage.
蜂窝网络中的细胞呼吸、扇形和致密化
本文建立了全向扇形蜂窝网络的其他蜂窝干扰因子f的封闭形式公式。该公式基于流体模型,该模型通过网络中空间分布的连续发射机来近似离散基站实体。仿真结果表明,即使对于传统的六边形网络,所得到的封闭公式也是很好的近似。由f,我们可以推导出下行链路上的中断概率作为移动密度和覆盖范围的函数。根据最大可接受的中断概率,我们可以推断出蜂窝覆盖与移动密度之间的联系,从而用一种新的、简单的、快速的方法突出了蜂窝呼吸的概念。最后,我们展示了运营商如何使用这种方法来评估扇形化或BS密度对小区覆盖的影响。
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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