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dc.contributor.authorPilo de la Fuente, Eduardo 
dc.contributor.authorMazumder, Sudip K.
dc.contributor.authorGonzález Franco, Ignacio
dc.date.accessioned2024-02-12T10:56:06Z
dc.date.available2024-02-12T10:56:06Z
dc.date.issued2014
dc.identifier.issn2325-5897spa
dc.identifier.urihttps://hdl.handle.net/10641/3949
dc.description.abstractIn the last decade, the development of next-generation electrical smart grids (ESGs) has been one of the priorities in the field of electrical engineering, both for most of the research centers and for the industry. In short, an ESG consists of the integration of information technologies into the electrical system to improve its controllability. In traditional power systems, the control has been carried out only by the power plants and some elements of the grid (transformer tap-changers, compensation capacitors, and reactances), whereas, in the next-generation smart grids, most of the elements can respond to control orders from the system operator, which allows, for instance, for the integration of the distributed generation and the demand into the control schemes of the power system. Because of this improved controllability, ESG technologies promise a significant improvement in the capacity utilization, the reliability of the system, and the energy efficiency of the grid.spa
dc.language.isoengspa
dc.publisherIEEE Electrification Magazinespa
dc.rightsAtribución-NoComercial-SinDerivadas 3.0 España*
dc.rights.urihttp://creativecommons.org/licenses/by-nc-nd/3.0/es/*
dc.titleRailway Electrical Smart Grids: An introduction to next-generation railway power systems and their operation.spa
dc.typejournal articlespa
dc.type.hasVersionAMspa
dc.rights.accessRightsopen accessspa
dc.identifier.doi10.1109/MELE.2014.2338411spa
dc.relation.publisherversionhttps://ieeexplore.ieee.org/document/6912058spa


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