Vertical load uncertainty at the T/D boundary under different spatial DER allocation techniques

dc.contributor.authorHeymann, Fabianes-ES
dc.contributor.authorSilva, João M.es-ES
dc.contributor.authorVilaca, Philipees-ES
dc.contributor.authorSoares, Filipe Joeles-ES
dc.contributor.authorDueñas Martínez, Pabloes-ES
dc.contributor.authorMelo, Joeles-ES
dc.contributor.authorMiranda, Vladimiroes-ES
dc.date.accessioned2025-03-04T18:19:06Z
dc.date.available2025-03-04T18:19:06Z
dc.date.issued2019-09-26es_ES
dc.descriptionCapítulos en libroses_ES
dc.description.abstractVertical load is the power flow between electrical transmission and distribution networks. In the past, large-scale generators connected to transmission systems supplied consumers connected to lower voltage levels across distribution grids. Thus, vertical loads tended to be downward-oriented. This paper presents a spatiotemporal distributed energy resources (DER) diffusion model to analyze vertical load uncertainty resulting from different DER diffusion process representations currently used in the industry and academia. Network planners and operators can use such model to understand the long-term evolution of load at the T/D boundary. The proposal is applied to the Portuguese power system, combining, as first of its kind, highly granulated population census with georeferenced transmission and distribution network datasets. This application analyzes the 20-year evolution of such vertical load flows at the transmission-distribution boundary under a strong uptake of DER embodied in lower voltage levels in Portugal.es-ES
dc.description.abstractVertical load is the power flow between electrical transmission and distribution networks. In the past, large-scale generators connected to transmission systems supplied consumers connected to lower voltage levels across distribution grids. Thus, vertical loads tended to be downward-oriented. This paper presents a spatiotemporal distributed energy resources (DER) diffusion model to analyze vertical load uncertainty resulting from different DER diffusion process representations currently used in the industry and academia. Network planners and operators can use such model to understand the long-term evolution of load at the T/D boundary. The proposal is applied to the Portuguese power system, combining, as first of its kind, highly granulated population census with georeferenced transmission and distribution network datasets. This application analyzes the 20-year evolution of such vertical load flows at the transmission-distribution boundary under a strong uptake of DER embodied in lower voltage levels in Portugal.en-GB
dc.description.versioninfo:eu-repo/semantics/publishedVersiones_ES
dc.format.mimetypeapplication/pdfes_ES
dc.identifier.urihttp://hdl.handle.net/11531/97797
dc.keywordsDiffusion of Innovations Theory, Distributed Energy Resources, Transmission system planning, Spatiotemporal modeling.es-ES
dc.keywordsDiffusion of Innovations Theory, Distributed Energy Resources, Transmission system planning, Spatiotemporal modeling.en-GB
dc.language.isoen-GBes_ES
dc.publisherUniversidade do Porto; Instituto de Engenharia de Sistemas e Computadores, Tecnologia e Ciência (Oporto, Portugal)es_ES
dc.rightses_ES
dc.rights.accessRightsinfo:eu-repo/semantics/restrictedAccesses_ES
dc.rights.uries_ES
dc.sourceLibro: 2nd International Conference on Smart Energy Systems and Technologies - SEST 2019, Página inicial: 1-6, Página final:es_ES
dc.subject.otherInstituto de Investigación Tecnológica (IIT)es_ES
dc.titleVertical load uncertainty at the T/D boundary under different spatial DER allocation techniqueses_ES
dc.typeinfo:eu-repo/semantics/bookPartes_ES

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