k层异构小蜂窝网络:通过积极的频率重用来平衡频谱使用和功耗

Y. Sambo, M. Z. Shakir, A. R. Ekti, K. Qaraqe, E. Serpedin, M. Imran
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引用次数: 2

摘要

异构小蜂窝网络(HetSNets)被认为是未来移动网络的标准部分,其中多个低功耗,低成本基站(例如,femtocells)补充现有的宏蜂窝基础设施。在本文中,我们提出了一种异构网络,其中部署了多层小蜂窝,从而扩大了网络覆盖范围并增加了频率重用距离,而不影响频率重用系数。由此产生的网络被称为k层HetSNets,其中小单元被填充在宏单元之间,使得网络中的每个宏单元采用积极的频率重用方案,即在每个宏单元中使用相同的频率集。结果表明,在不增加频率复用系数的情况下,可显著降低相邻宏小区的同信道干扰。小型蜂窝的大规模部署可能会增加所考虑的HetSNet的下行链路功耗。因此,我们表明,每个k层中的小蜂窝的种群概率依赖于由活跃移动用户引起的流量负载,因此网络中的小蜂窝在白天的低流量和中等流量负载下打开其睡眠模式。仿真结果说明了主动频率复用方案和依赖于业务负载的小小区人口对小小区基站系统干扰和下行链路功耗的影响。
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K-tier heterogeneous small-cell networks: Towards balancing the spectrum usage and power consumption with aggressive frequency reuse
Heterogeneous small-cell networks (HetSNets) are considered as a standard part of the future mobile networks where multiple low-power, low-cost base stations (e.g., femtocells) complement the existing macrocell infrastructure. In this paper, we propose a heterogeneous network where multiple tiers of small-cells are deployed which in turn expand the network coverage and increase the frequency reuse distance without compromising the frequency reuse factor. The resultant network is referred to as K-tier HetSNets, where small-cells are padded between the macrocells such that each of the macrocells in the network employs aggressive frequency reuse scheme, i.e., same set of frequencies is used in each macrocell. It has been shown that the co-channel interference due to neighboring macrocells has been reduced significantly without increasing the frequency reuse factor. The large scale deployment of the small-cells may increase the downlink power consumption of the considered HetSNet. Therefore, we show that the population of small-cells in each of the K-tiers is probabilistically dependent on the traffic load due to active mobile users, such that the small-cells in the network turn on their sleep mode under low and medium traffic load during the day. Several simulation results are included to illustrate the impact of the aggressive frequency reuse scheme and traffic load dependent population of small-cells on the system interference and downlink power consumption of the small-cell base stations.
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