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dc.contributor.authorAzcondo, Francisco J.
dc.contributor.authorPigazo, Alberto
dc.contributor.authorLamo-Anuarbe, Paula
dc.contributor.authorBranas, Christian
dc.date2022
dc.date.accessioned2023-02-27T13:23:03Z
dc.date.available2023-02-27T13:23:03Z
dc.identifier.isbn9781665410816
dc.identifier.issn1093-5142
dc.identifier.urihttps://reunir.unir.net/handle/123456789/14249
dc.description.abstractThe study of the interaction with the grid, including synchronization, controller design and stability assessment for 1f grid-following (GFL) and grid-forming (GFM) power converters requires an efficient modeling tool to design universal grid-connected converters considering the different grid scenarios. From the initial time-periodic system, approximated linear time-invariant (LTI) models are obtained through dynamic phasors, linearization of variables represented in a virtual synchronous rotating reference frame (RRF) or linearization in the frequency domain, i.e. harmonic linearization. The accuracy and complexity of the obtained model depend on the method used. This work proposes to use the well-known envelope modeling approach used for resonant converters but requiring the time periodic input to generate its related phase synchronization for the model. The result is a simple and accurate LTI model of 1fGFL/GFM power converter for such stability studies. The proposed 1f modeling approach is valid for any application with phase locked loop (PLL) synchronization. Simulation results validating de proposal are provided.es_ES
dc.language.isoenges_ES
dc.publisherProceedings of the IEEE Workshop on Computers in Power Electronics, COMPELes_ES
dc.relation.urihttps://ieeexplore.ieee.org/document/9829996es_ES
dc.rightsrestrictedAccesses_ES
dc.subjectenvelope modelinges_ES
dc.subjectgrid-connected power converterses_ES
dc.subjectphase-locked loopes_ES
dc.subjectScopus(2)es_ES
dc.subjectWOS(2)es_ES
dc.titleEnvelope-based Modeling for Single-Phase Grid-Following and Forming Converterses_ES
dc.typeconferenceObjectes_ES
reunir.tag~ARIes_ES
dc.identifier.doihttps://doi.org/10.1109/COMPEL53829.2022.9829996


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