基于随机几何的中继辅助蜂窝网络能量效率分析

Huan Yu, Yunzhou Li, M. Kountouris, Xibin Xu, Jing Wang
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引用次数: 11

摘要

由于降低能源消耗一直是无线行业关注的重要问题,节能通信是未来宽带网络的主要关注点。在本文中,我们使用随机几何工具研究中继辅助蜂窝网络的能量效率。首先推导了宏基站(MBS)到用户(UE)、宏基站到中继站(RS)、宏基站到终端链路的覆盖概率,然后对宏基站和宏基站的功耗进行了建模。基于解析模型和表达式,对中继辅助蜂窝网络的能量效率进行了评估,并证明了中继辅助蜂窝网络在MBS到UE链路或RS到UE链路的发射功率上是严格准凹的。数值结果还表明,随着MBS密度的增加,能量效率首先提高,然后达到一个上限。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Energy efficiency analysis of relay-assisted cellular networks using stochastic geometry
As energy consumption reduction has been an important concern for the wireless industry, energy-efficient communications is of prime interest for future broadband networks. In this paper, we study the energy efficiency of relay-assisted cellular networks using tools from stochastic geometry. We first derive the coverage probability for the macro base station (MBS) to user (UE), the MBS to relay station (RS), and the RS to UE links, and then we model the power consumption of MBSs and RSs. Based on the analytical model and expressions, the energy efficiency of relay-assisted cellular networks is then evaluated and is shown to be strictly quasi-concave on the transmit power for the MBS to UE link or the RS to UE link. Numerical results also show that the energy efficiency first improves while it hits a ceiling as the MBS density increases.
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