Performance analysis for two-tier cellular systems based on probabilistic distance models

Maryam Ahmadi, Fei Tong, Lei Zheng, Jianping Pan
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引用次数: 11

Abstract

Tiered networks have been introduced to mitigate the issues related to poor cellular coverage in dead zones and indoor environments. However, the large-scale deployment of multiple tiers can result in severe intra-tier and inter-tier interference that can considerably degrade the performance of users in all tiers. Thus, the network interference analysis has been an important topic in tiered networks. In this paper, we focus on the uplink resource reusing scenario in a two-tier cellular network consisting of a macro cell and multiple femto cells. Without imposing any limitations on the shape of the macro/femto cells (as long as they are approximated by polygons), for the first time in the literature, we obtain the distance distributions associated with tiered structures. Utilizing these distance distributions and the path-loss model in an interference-limited environment, we obtain the distributions of the received signal and interference for both tiers. Further, we give details on how our approach applies to the downlink resource reusing scenario as well as a network with multiple macro cells. Our performance study provides insights into the Signal-to-Interference Ratio and outage probability for macro/femto-cell base stations.
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基于概率距离模型的双层蜂窝系统性能分析
分层网络已被引入,以减轻与死区和室内环境中蜂窝覆盖差有关的问题。然而,多层的大规模部署可能会导致严重的层内和层间干扰,从而大大降低所有层用户的性能。因此,网络干扰分析已成为分层网络中的一个重要课题。本文主要研究由一个宏蜂窝和多个femto蜂窝组成的二层蜂窝网络中的上行资源复用方案。在没有对宏/femto细胞的形状施加任何限制的情况下(只要它们是用多边形近似的),我们在文献中首次获得了与分层结构相关的距离分布。利用这些距离分布和有限干扰环境下的路径损耗模型,我们得到了两层接收信号和干扰的分布。此外,我们还详细介绍了我们的方法如何应用于下行链路资源重用场景以及具有多个宏单元的网络。我们的性能研究为宏/飞蜂窝基站的信干扰比和中断概率提供了见解。
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