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    Critical comparison of energy management algorithms for lithium-ion batteries in renewable power plants

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    2019100107_Berrueta_CriticalComparison.pdf (1.137Mb)
    Date
    2019
    Author
    Berrueta Irigoyen, Alberto Upna
    Soto Cabria, Adrián Upna
    García Solano, Miguel Upna
    Parra Laita, Íñigo de la Upna
    Sanchis Gúrpide, Pablo Upna
    Ursúa Rubio, Alfredo Upna
    Version
    Acceso abierto / Sarbide irekia
    xmlui.dri2xhtml.METS-1.0.item-type
    Contribución a congreso / Biltzarrerako ekarpena
    Version
    Versión aceptada / Onetsi den bertsioa
    Project Identifier
    ES/1PE/DPI2016-80641-R 
    ES/1PE/DPI2016-80642-R 
    Impact
     
     
     
    10.1109/EEEIC.2019.8783864
     
     
     
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    Abstract
    Lithium-ion batteries are gaining importance for a variety of applications due to their price decrease and characteristics improvement. A good energy management strategy is required in order to increase the profitability of an energy system using a Li-ion battery for storage. The vast number of management algorithms that has been proposed to optimize the achieved profit, with diverse computationa ... [++]
    Lithium-ion batteries are gaining importance for a variety of applications due to their price decrease and characteristics improvement. A good energy management strategy is required in order to increase the profitability of an energy system using a Li-ion battery for storage. The vast number of management algorithms that has been proposed to optimize the achieved profit, with diverse computational power requirements and using models with different complexity, raise doubts about the suitability of an algorithm and the required computation power for a particular application. The performance of three energy management algorithms based on linear, quadratic, and dynamic programming are compared in this work. A realistic scenario of a medium-sized PV plant with a constraint of peak shaving is used for this comparison. The results achieved by the three algorithms are compared and the grounds of the differences are analyzed. Among the three compared algorithms, the quadratic one seems to be the most suitable for renewableenergy applications, given the undue simplification of the battery aging required by the linear algorithm and the discretization and computational power required by a dynamic algorithm. [--]
    Subject
    Lithium-ion battery, Energy management, Renewable energy, Microgrid
     
    Publisher
    IEEE
    Published in
    Proceedings - 2019 IEEE International Conference on Environment and Electrical Engineering and 2019 IEEE Industrial and Commercial Power Systems Europe, EEEIC/I and CPS Europe 2019, June 2019, Article number 8783864
    Departament
    Universidad Pública de Navarra. Departamento de Ingeniería Eléctrica, Electrónica y de Comunicación / Nafarroako Unibertsitate Publikoa. Ingeniaritza Elektriko, Elektroniko eta Telekomunikazio Saila / Universidad Pública de Navarra / Nafarroako Unibertsitate Publikoa. ISC - Institute of Smart Cities
     
    Publisher version
    https://doi.org/10.1109/EEEIC.2019.8783864
    URI
    https://hdl.handle.net/2454/36725
    Sponsorship
    The authors would like to acknowledge the support of the Spanish State Research Agency (AEI) and FEDER–UE under grants DPI2016-80641-R and DPI2016-80642-R and of Government of Navarra through research projects PI020 RENEWABLE-STORAGE and 0011-1411-2018-000029 GERA.
    Appears in Collections
    • Comunicaciones y ponencias de congresos - Biltzarrak eta Argitalpenak [450]
    • Comunicaciones y ponencias de congresos ISC - ISC biltzarretako komunikazioak eta txostenak [56]
    • Comunicaciones y ponencias de congresos DIEC - IEKS Biltzarretako komunikazioak eta txostenak [49]
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