Transmission System Planning Considering Solar Distributed Generation Penetration

dc.contributor.author Phillipe Vilaça Gomes en
dc.contributor.author João Tomé Saraiva en
dc.date.accessioned 2017-12-26T10:11:29Z
dc.date.available 2017-12-26T10:11:29Z
dc.date.issued 2017 en
dc.description.abstract In recent years, power systems have been watching important advancements related with Plug-in-Electrical Vehicles (PEVs), Demand Side Management (DSM), Distributed Generation (DG), Microgrid and Smart Grid installations that directly affect distribution networks while impacting indirectly on Transmission studies. These changes will lead to an extra flexibility on the transmission-distribution boundary and to a significant modification of the load patterns, that are an essential input to planning studies. In this scope, this paper describes a multiyear Transmission Expansion Planning (TEP) solved by Evolutionary Particle Swarm Optimization (EPSO) and incorporating the impact of solar DG penetration. The primary substation load profiles and the solar generation profiles are taken into account on the planning problem. The numerical simulations were conducted using the IEEE 24 bus reliability test system in which the planning horizon is 3 years and the load growth is 2.5 % per year. If demand and solar DG peaks are coincident, then the liquid demand seen by the transmission network gets reduced enabling a reduction of investment costs. In the tested cases, these peaks were not coincident so that the optimal expansion plan remains unchanged even though the injected power from DG is large. This stresses the fact that solar DG may not on an isolated way contribute to alleviate the demand seen by transmission networks but should be associated with storage devices or demand side management programs. en
dc.identifier.uri http://repositorio.inesctec.pt/handle/123456789/4924
dc.language eng en
dc.relation 6297 en
dc.relation 268 en
dc.rights info:eu-repo/semantics/openAccess en
dc.title Transmission System Planning Considering Solar Distributed Generation Penetration en
dc.type conferenceObject en
dc.type Publication en
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