Open AccessEngineeringComputer Science

G. Auer, V. Giannini, C. Desset, István Gódor, P. Skillermark, M. Olsson, M. Imran, D. Sabella, M. J. González, O. Blume, A. Fehske

2011.10.24IEEE WIRELESS COMMUNICATIONS

DOI: 10.1109/mwc.2011.6056691

tlooto Summary

The most important addenda of the proposed E3F are a sophisticated power model for various base station types, as well as large-scale long-term traffic models, which are applied to quantify the energy efficiency of the downlink of a 3GPP LTE radio access network.

Abstract

In order to quantify the energy efficiency of a wireless network, the power consumption of the entire system needs to be captured. In this article, the necessary extensions with respect to existing performance evaluation frameworks are discussed. The most important addenda of the proposed energy efficiency evaluation framework (E3F) are a sophisticated power model for various base station types, as well as large-scale long-term traffic models. The BS power model maps the RF output power radiated at the antenna elements to the total supply power of a BS site. The proposed traffic model emulates the spatial distribution of the traffic demands over large geographical regions, including urban and rural areas, as well as temporal variations between peak and off-peak hours. Finally, the E3F is applied to quantify the energy efficiency of the downlink of a 3GPP LTE radio access network.

Citation format

AUER, G., et al. How much energy is needed to run a wireless network? IEEE WIRELESS COMMUNICATIONS, 2011, 18.