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Energy-efficient base station cooperation in downlink heterogeneous cellular networks

机译:下行链路异构蜂窝网络中的节能基站协作

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Heterogeneous cellular networks (HetNets) are to be deployed for future wireless communication to meet the ever-increasing mobile traffic demand. However, the dense and random deployment of small cells and their uncoordinated operation raise important concerns about energy efficiency. In this paper, we consider the base station (BS) cooperation solution for improving energy efficiency of the HetNets where BSs from each tier within the cooperative cluster jointly transmit the same data to a typical user. Firstly, based on the proposed clustering model, we precisely derive the ergodic rate expression using tools from stochastic geometry. Furthermore, we formulate a power minimization problem with minimum ergodic rate constraint and derive a closed-form approximated result of the optimal cooperative radii. Building upon these results, we could effectively address the problem how to design appropriate cooperative radii, taking into account the trade-off of ergodic rate and energy efficiency. Simulation results also indicate that under the proposed clustering model, deploying a two-tier HetNet is more energy-saving compared to a macro-only network.
机译:异构蜂窝网络(HetNets)将被部署用于未来的无线通信,以满足不断增长的移动业务需求。然而,小型小区的密集和随机部署及其不协调的操作引起了对能量效率的重要关注。在本文中,我们考虑了用于提高HetNet的能源效率的基站(BS)协作解决方案,其中协作集群中每个层的BS共同将相同的数据传输给典型用户。首先,在提出的聚类模型的基础上,我们使用随机几何工具精确推导遍历速率表达式。此外,我们制定了具有最小遍历率约束的功率最小化问题,并得出了最优协作半径的闭合形式的近似结果。在这些结果的基础上,我们可以在考虑遍历率和能源效率之间进行权衡的情况下,有效地解决如何设计适当的合作半径的问题。仿真结果还表明,在提出的群集模型下,与仅使用宏的网络相比,部署两层HetNet更加节能。

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