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Optimal picocell base station density for energy-efficient heterogeneous cellular network under received power constraint

机译:接收功率约束下的节能异构蜂窝网络优化微微电池基站密度

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Heterogeneous cellular networks (HCNs) have emerged as the primary solution for overwhelming traffic demands. However, the dense deployment of small cell base stations (BSs) inevitably triggers a tremendous escalation of energy consumption. In this paper, we apply tools from stochastic geometry to investigate and optimise the energy efficiency (EE) for a two-tier HCN. The average successful transmission rate per unit area of a two-tier HCN is derived, and then the total power consumption of all the BSs in per unit area of a two-tier HCN is derived. Based on that, the EE expression of the whole HCN is formulated. We analysis the received signal power constraint for a typical user and convert the power constraint to density constraint. Finally, we use a one-dimensional optimisation algorithm to maximise the EE by optimising picocell BS density. Simulation results validate the accuracy of the theoretical analysis and demonstrate the proposed optimal picocell BS density can obviously improve EE.
机译:异构蜂窝网络(HCNS)已成为压倒性需求的主要解决方案。然而,小细胞基站(BSS)的密集部署不可避免地触发了对能量消耗的巨大升级。在本文中,我们将工具从随机几何中应用于调查和优化双层HCN的能效(EE)。导出了双层HCN的每个单位面积的平均成功传输速率,然后导出了双层HCN的每单位面积的所有BS的总功耗。基于此,配制整个HCN的EE表达。我们分析了典型用户的接收信号功率约束,并将功率约束转换为密度约束。最后,我们使用一维优化算法通过优化微微区域BS密度来最大化EE。仿真结果验证了理论分析的准确性,并证明了所提出的最佳微微小区BS密度明显改善EE。

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