Energy consumption of data transfer: Intensity indicators versus absolute estimates

Author:

Guennebaud Gaël1ORCID,Bugeau Aurélie2

Affiliation:

1. Inria University of Bordeaux Talence France

2. CNRS, LaBRI, UMR 5800, IUF University of Bordeaux Talence France

Abstract

AbstractThe assessment of energy consumption of data traffic for Internet services usually relies on energy intensity figures (in Wh/GB). In this paper, we argue against using these indicators for evaluating the evolution of energy consumption of data transmission induced by changes in Internet usage. We describe a model that estimates global impacts for different scenarios of Internet usages and technological hypothesises, and show that it can overcome some limitations of intensity indicators. We experiment the model on four use‐cases: basic usage, video streaming, large downloads, and video conferencing. Results show that increasing the resolution of videos does increase the total energy consumption while misleadingly decreasing the power intensity indicator at the same time. In other words, a more efficient network does not necessarily mean less energy consumption.

Publisher

Wiley

Reference26 articles.

1. ADEME. (2024).Evaluation de l'empreinte environnementale de la fourniture d'accès à internet en france.https://librairie.ademe.fr/produire‐autrement/6789‐evaluation‐de‐l‐empreinte‐environnementale‐de‐lafourniture‐d‐acces‐a‐internet‐en‐france.html

2. Ahmed A. &Coupechoux M.(2023).The long road to sobriety: Estimating the operational power consumptionof cellular base stations in France.The International Conference on Information and Communications Technology for Sustainability (ICT4S). In ICT4S ‐ International Conference on ICT forSustainability. Rennes France. DOI:https://doi.org/10.1109/ICT4S58814.2023.00027

3. ARCEP. (2023).Baromètre de l'interconnexion de données en france.https://www.arcep.fr/cartes‐etdonnees/nos‐publications‐chiffrees/linterconnexion‐de‐donnees/barometre‐de‐linterconnexion‐de‐donneesen‐france.html#c10040

4. Electricity Intensity of Internet Data Transmission: Untangling the Estimates

5. Energy Consumption in Optical IP Networks

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