Modelling the energy efficiency of Heterogeneous Cloud Radio Access Networks

R. Alhumaima, M. Khan, H. Al-Raweshidy
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引用次数: 7

Abstract

Cellular network performance is measured by its spectral and energy efficiency, with power consumption an important key to success for the upcoming heterogeneous (HetNet) communication system generations. The proposed models presented in this paper, component, linear, and parameterized power models, analyse and evaluate the power consumption participants in both Cloud Radio Access Network (C-RAN) and the State of the art (SotA) Base stations i.e.(Macro, Pico, Femto) when all participants interface in the area of interest, collectively called Heterogeneous-Cloud Radio Access Network (H-CRAN), in a proposal to enhance both energy and spectral efficiencies. Results showed that a C-RAN network reduced the cooling power consumption to about 87%, which reduced the overall power consumption compared to MBS deployment. Finally, H-CRAN cooling and total power consumption is evaluated by integrating C-RAN and the SotA BSs power consumption models.
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异构云无线接入网络的能量效率建模
蜂窝网络的性能是通过其频谱和能量效率来衡量的,功耗是即将到来的异构(HetNet)通信系统成功的重要关键。本文提出的组件、线性和参数化功率模型,分析和评估了云无线接入网(C-RAN)和最先进的(SotA)基站(Macro、Pico、Femto)中所有参与者在感兴趣的区域(统称为异构云无线接入网(H-CRAN))接口时的功耗参与者,以提高能量和频谱效率。结果表明,与MBS部署相比,C-RAN网络将冷却功耗降低了约87%,降低了总体功耗。最后,通过集成C-RAN和SotA BSs功耗模型,对H-CRAN的散热和总功耗进行了评估。
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