Smart and agile local energy systems hold the key for broader net-zero energy transitions

The UK has centered itself in the global race to mitigate the impacts of climate change with ambitious plans announced in 2019, committing to the elimination of the UK's net contribution to greenhouse gas emissions by 2050. These targets will require a transition of a historically inelastic ene...

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Main Authors: Ashtine, M, Wheeler, S, Wallom, D, McCulloch, M
格式: Conference item
語言:English
出版: IEEE 2021
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author Ashtine, M
Wheeler, S
Wallom, D
McCulloch, M
author_facet Ashtine, M
Wheeler, S
Wallom, D
McCulloch, M
author_sort Ashtine, M
collection OXFORD
description The UK has centered itself in the global race to mitigate the impacts of climate change with ambitious plans announced in 2019, committing to the elimination of the UK's net contribution to greenhouse gas emissions by 2050. These targets will require a transition of a historically inelastic energy system within a closing window of time. Our paper presents a whole system approach which argues that decentralized and distributed energy resources operating at grid-edge need an agile trial framework with multi-perspective and experienced stakeholders to develop balanced and well-supported network flexibility services. Incubating these new grid-edge network services require innovative market, operators and digital infrastructure, particularly at local scales. Based on preliminary findings from a UK perspective, Project LEO, we propose a framework around the restructuring of local energy systems which reduce uncertainty through an innovative 'ecosystem' that gives room to failure while minimizing risk to extract value and learnings.
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spelling oxford-uuid:e46a01f4-dbd5-463f-8cf8-b27ba9ba53462022-03-27T10:16:28ZSmart and agile local energy systems hold the key for broader net-zero energy transitionsConference itemhttp://purl.org/coar/resource_type/c_5794uuid:e46a01f4-dbd5-463f-8cf8-b27ba9ba5346EnglishSymplectic ElementsIEEE2021Ashtine, MWheeler, SWallom, DMcCulloch, MThe UK has centered itself in the global race to mitigate the impacts of climate change with ambitious plans announced in 2019, committing to the elimination of the UK's net contribution to greenhouse gas emissions by 2050. These targets will require a transition of a historically inelastic energy system within a closing window of time. Our paper presents a whole system approach which argues that decentralized and distributed energy resources operating at grid-edge need an agile trial framework with multi-perspective and experienced stakeholders to develop balanced and well-supported network flexibility services. Incubating these new grid-edge network services require innovative market, operators and digital infrastructure, particularly at local scales. Based on preliminary findings from a UK perspective, Project LEO, we propose a framework around the restructuring of local energy systems which reduce uncertainty through an innovative 'ecosystem' that gives room to failure while minimizing risk to extract value and learnings.
spellingShingle Ashtine, M
Wheeler, S
Wallom, D
McCulloch, M
Smart and agile local energy systems hold the key for broader net-zero energy transitions
title Smart and agile local energy systems hold the key for broader net-zero energy transitions
title_full Smart and agile local energy systems hold the key for broader net-zero energy transitions
title_fullStr Smart and agile local energy systems hold the key for broader net-zero energy transitions
title_full_unstemmed Smart and agile local energy systems hold the key for broader net-zero energy transitions
title_short Smart and agile local energy systems hold the key for broader net-zero energy transitions
title_sort smart and agile local energy systems hold the key for broader net zero energy transitions
work_keys_str_mv AT ashtinem smartandagilelocalenergysystemsholdthekeyforbroadernetzeroenergytransitions
AT wheelers smartandagilelocalenergysystemsholdthekeyforbroadernetzeroenergytransitions
AT wallomd smartandagilelocalenergysystemsholdthekeyforbroadernetzeroenergytransitions
AT mccullochm smartandagilelocalenergysystemsholdthekeyforbroadernetzeroenergytransitions