Bending the ICT curve: Evaluating options to achieve 2030 sector-wide climate goals & projecting new technology impacts

The global impact of the information and communications technology (ICT) sector is both growing and changing as computing technologies continue to develop and industry leaders make more efforts towards emissions reductions. Recent work highlights the increasing importance of manufacturing emissions...

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Main Author: Bell, Allison
Other Authors: Olivetti, Elsa A.
Format: Thesis
Published: Massachusetts Institute of Technology 2023
Online Access:https://hdl.handle.net/1721.1/151839
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author Bell, Allison
author2 Olivetti, Elsa A.
author_facet Olivetti, Elsa A.
Bell, Allison
author_sort Bell, Allison
collection MIT
description The global impact of the information and communications technology (ICT) sector is both growing and changing as computing technologies continue to develop and industry leaders make more efforts towards emissions reductions. Recent work highlights the increasing importance of manufacturing emissions in regards to the total impact of computing systems, but the tradeoff space in which decisions made to reduce emissions or energy in one part of a device lifecycle might increase emissions or energy demand in another remains largely unexplored. We evaluate several options for global impact reduction within the ICT sector, namely within data center (server) and smartphone footprints, focusing both on the maximal potential impact of each intervention and highlighting associated tradeoffs and limitations. We find that the ICT sector’s 2030 target of a 45% emissions reduction from 2020 levels is potentially achievable through the mechanisms proposed, including: renewable energy for operation, low-carbon electricity for manufacturing, extended device lifetimes, and the harnessing of energy efficiency improvements for impact reduction. In addition, we propose a method for evaluating the total carbon footprint benefits of a new computing technology through a detailed case study of a prototypical analog accelerator device. We provide an example of underspecified estimation of scaled device manufacturing impacts obtained through a reorganization of existing process emissions data. We then demonstrate the use of that estimate to evaluate the benefits of adoption of the new technology from the perspective of total footprint reduction under varying device usage conditions. Both our framework for estimating global ICT sector impact reduction strategies and our framework for assessing tradeoffs associated with new computing technology adoption are intended to serve as starting points for continued discussion and to align different, often siloed, stakeholders within the computing industry towards effectively “bending the curve” of ICT sector emissions growth.
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spelling mit-1721.1/1518392023-08-24T03:34:34Z Bending the ICT curve: Evaluating options to achieve 2030 sector-wide climate goals & projecting new technology impacts Bell, Allison Olivetti, Elsa A. Massachusetts Institute of Technology. Institute for Data, Systems, and Society The global impact of the information and communications technology (ICT) sector is both growing and changing as computing technologies continue to develop and industry leaders make more efforts towards emissions reductions. Recent work highlights the increasing importance of manufacturing emissions in regards to the total impact of computing systems, but the tradeoff space in which decisions made to reduce emissions or energy in one part of a device lifecycle might increase emissions or energy demand in another remains largely unexplored. We evaluate several options for global impact reduction within the ICT sector, namely within data center (server) and smartphone footprints, focusing both on the maximal potential impact of each intervention and highlighting associated tradeoffs and limitations. We find that the ICT sector’s 2030 target of a 45% emissions reduction from 2020 levels is potentially achievable through the mechanisms proposed, including: renewable energy for operation, low-carbon electricity for manufacturing, extended device lifetimes, and the harnessing of energy efficiency improvements for impact reduction. In addition, we propose a method for evaluating the total carbon footprint benefits of a new computing technology through a detailed case study of a prototypical analog accelerator device. We provide an example of underspecified estimation of scaled device manufacturing impacts obtained through a reorganization of existing process emissions data. We then demonstrate the use of that estimate to evaluate the benefits of adoption of the new technology from the perspective of total footprint reduction under varying device usage conditions. Both our framework for estimating global ICT sector impact reduction strategies and our framework for assessing tradeoffs associated with new computing technology adoption are intended to serve as starting points for continued discussion and to align different, often siloed, stakeholders within the computing industry towards effectively “bending the curve” of ICT sector emissions growth. S.M. 2023-08-23T16:12:42Z 2023-08-23T16:12:42Z 2023-06 2023-07-17T15:19:16.721Z Thesis https://hdl.handle.net/1721.1/151839 In Copyright - Educational Use Permitted Copyright retained by author(s) https://rightsstatements.org/page/InC-EDU/1.0/ application/pdf Massachusetts Institute of Technology
spellingShingle Bell, Allison
Bending the ICT curve: Evaluating options to achieve 2030 sector-wide climate goals & projecting new technology impacts
title Bending the ICT curve: Evaluating options to achieve 2030 sector-wide climate goals & projecting new technology impacts
title_full Bending the ICT curve: Evaluating options to achieve 2030 sector-wide climate goals & projecting new technology impacts
title_fullStr Bending the ICT curve: Evaluating options to achieve 2030 sector-wide climate goals & projecting new technology impacts
title_full_unstemmed Bending the ICT curve: Evaluating options to achieve 2030 sector-wide climate goals & projecting new technology impacts
title_short Bending the ICT curve: Evaluating options to achieve 2030 sector-wide climate goals & projecting new technology impacts
title_sort bending the ict curve evaluating options to achieve 2030 sector wide climate goals projecting new technology impacts
url https://hdl.handle.net/1721.1/151839
work_keys_str_mv AT bellallison bendingtheictcurveevaluatingoptionstoachieve2030sectorwideclimategoalsprojectingnewtechnologyimpacts