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dc.rights.licensehttp://creativecommons.org/licenses/by-nc-sa/3.0/ve/es_VE
dc.contributor.authorSalas Puente, Robert
dc.contributor.authorMarzal, S.
dc.contributor.authorGonzalez-Medina, R.
dc.contributor.authorFigueres, E.
dc.contributor.authorGarcerá, G.
dc.date.accessioned2019-04-29T18:58:47Z
dc.date.available2019-04-29T18:58:47Z
dc.date.issued2018
dc.identifier.urihttp://www.saber.ula.ve/handle/123456789/45746
dc.descriptionElectric Power Components and Systems, 0(0):1–16, 2018 Copyright C Taylor & Francis Group, LLC ISSN: 1532-5008 print / 1532-5016 online DOI: 10.1080/15325008.2018.1469177es_VE
dc.language.isoenes_VE
dc.publisherSaberULAes_VE
dc.rightsinfo:eu-repo/semantics/openAccesses_VE
dc.titleAn Algorithm for the Efficient Management of the Power Converters Connected to the DC Bus of a Hybrid Microgrid Operating in Grid-connection Modees_VE
dc.typeinfo:eu-repo/semantics/preprintes_VE
dcterms.dateAccepted24 March 2018
dcterms.dateSubmitted31 October 2016
dc.description.abstract1In this paper a centralized control strategy for the 10 efficient power management of the power converters conforming a hybrid distributed generation microgrid is explained. The microgrid is based on a DC and an AC bus. The study is focused on the converters connected to the DC bus. The proposed power management algorithm is implemented in a microgrid central processor. This 15 algorithm is based on assigning several operation functions to each of the generators, loads and energy storage systems in the microgrid. A communication system is used to assign the operation functions to each of the microgrid elements. The power flows between the DC and AC buses are studied in several operation scenarios, in which 20 the proposed control can be verified. Experimental and simulation results demonstrate that the algorithm allows to control the power dispatch inside the microgrid properly, by performing the following tasks: (1) the communications among power converters, the grid operator and intelligent loads, (2) 25 the connection and disconnection of loads, (3) the control of the power exchange between the distributed generators and the energy storage system, (4) the compliance of the power dispatch limit set by the grid operator, (5) the synchronization with the grid and (6) the control of the voltage at the DC bus.es_VE
dc.description.colacion1-16es_VE
dc.publisher.paisEspañaes_VE
dc.subject.facultadFacultad de Ingenieríaes_VE
dc.subject.institucionUniversidad de Los Andeses_VE
dc.subject.keywordsPower managementes_VE
dc.subject.keywordsMicrogridses_VE
dc.subject.keywordsCommunicationses_VE
dc.subject.keywordsEnergy storage systemses_VE
dc.subject.keywordsPhotovoltaicses_VE
dc.subject.keywordsPower converterses_VE
dc.subject.thematiccategoryIngenieríaes_VE
dc.subject.tipoMonografíases_VE
dc.type.mediaTextoes_VE


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