Energy Storage Integration with Renewable Energies: The Case of Concentration Photovoltaic Systems
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  • 关键词:Battery ; Concentration photovoltaic (CPV) system ; DC–DC converter ; Energy storage system ; Ultracapacitor
  • 刊名:The Handbook of Environmental Chemistry
  • 出版年:2016
  • 出版时间:2016
  • 年:2016
  • 卷:34
  • 期:1
  • 页码:73-94
  • 全文大小:920 KB
  • 参考文献:1.Márquez Angarita J, Garcia Usaola J (2007) Combining hydro-generation and wind energy: biddings and operation on electricity spot markets. Electr Power Syst Res 77(5–6):393–400CrossRef
    2.ESA Energy Storage Association (2014) http://​energystorage.​org/​
    3.Bradbury K (2010) Energy storage technology review. Tech. rep., Duke University, Durham
    4.Whittingham MS (2012) History, evolution, and future status of energy storage. Proc IEEE 100:1518–1534CrossRef
    5.Miller R, Winters M (2009) Opportunities in pumped storage hydropower: supporting attainment of our renewable energy goals. In: Proceedings of the Waterpower XVI conference, pp 27–30
    6.Regional Government of Madrid Energy Foundation (2011) Energy storage guide. Tech. rep., Council of Madrid
    7.Hausheer R, Heinze K, Katai S, Kaufman K, Litten J, Madaiah G (2010) Evaluating energy storage options: a case study at Los Angeles harbor college. Tech. rep., Donald Bren School of Environmental Science & Management. University of California, Santa Barbara
    8.Swierczynski M, Teodorescu R, Rasmussen CN, Rodriguez P, Vikelgaard H (2010) Overview of the energy storage systems for wind power integration enhancement. In: Proceedings of the IEEE international symposium on industrial electronics, ISIE, pp 3749–3756
    9.San Martín JI, Zamora I, San Martín JJ, Aperribay V, Eguía P (2011) Energy storage technologies for electrical applications. In: Proceedings of the international conference on renewable energies and power quality (ICREPQ’11), pp 1–6
    10.Chen H, Cong TN, Yang W, Tan C, Li Y, Ding Y (2009) Progress in electrical energy storage system: a critical review. Prog Nat Sci 19(3):291–312CrossRef
    11.Verma H, Gambhir J, Goyal S (2013) Progress in electrical energy storage system: a critical review. Int J Innov Technol Explor Eng 3(1):63–69
    12.Burke A (2000) Ultracapacitors: why, how, and where is the technology. J Power Sources 91(1):37–50CrossRef
    13.Kempener R, Simbolotti G, Tosato G (2013) Thermal energy storage. Technology brief. Tech. rep., EA-ETSAP and International Renewable Energy Agency IRENA Technology Brief E17
    14.DG ENER Working Paper (2013) The future role and challenges of energy storage. Tech. rep., European Commission Directorate-General for Energy
    15.Einhorn M, Valerio Conte F, Kral C, Fleig J (2013) Comparison, selection, and parameterization of electrical battery models for automotive applications. IEEE Trans Ind Electron 28(3):1429–1437
    16.Salameh ZM, Casacca MA, Lynch WA (1992) A mathematical model for lead-acid batteries. IEEE Trans Energy Convers 7(1):93–98CrossRef
    17.Tremblay O, Dessaint LA (2009) Experimental validation of a battery dynamic model for ev applications. World Electr Veh J 3:1–10
    18.Spyker RL, Nelms RM (2000) Classical equivalent circuit parameters for a double-layer. IEEE Trans Aerosp Electron Syst 36(3):829–836CrossRef
    19.Zubieta L, Bonert R (2000) Characterization of double-layer capacitors for power electronics applications. IEEE Trans Ind Appl 36(1):199–205CrossRef
    20.de Levie R (1963) On porous electrodes in electrolyte solutions: I. capacitance effects. Electrochim Acta 8(10):751–780CrossRef
    21.Hart DW (2011) Power electronics, International edn. McGraw-Hill, New York
    22.Himmelstoss FA (1994) Analysis and comparison of half
    idge bidirectional DC-DC converters. In: Proceedings of the 25th annual IEEE power electronics specialists conference, PESC’94, vol 2, pp 922–928
    23.Choi DK, Lee BK, Choi SW, Won CY, Yoo DW (2005) A novel power conversion circuit for cost-effective battery-fuel cell hybrid systems. J Power Sources 152:245–255CrossRef
    24.Lu D, François B (2009) Strategic framework of an energy management of a microgrid with a photovoltaic-based active generator. In: Proceedings of the 8th international symposium on advanced electromechanical motion systems & electric drives joint symposium. ELECTROMOTION 2009, pp 1–6
    25.Roncero-Sánchez P, Acha E (2014) Design of a control scheme for distribution static synchronous compensators with power-quality improvement capability. Energies 7(4):2476–2497CrossRef
  • 作者单位:Carlos de la Cruz (6)
    Mónica Baptista Lema (6)
    Xavier del Toro García (6)
    Pedro Roncero-Sánchez (6)

    6. School of Industrial Engineering, University of Castilla-La Mancha., Campus universitario s/n, 13071, Ciudad Real, Spain
  • 丛书名:Environment, Energy and Climate Change II
  • ISBN:978-3-319-17100-5
  • 刊物类别:Earth and Environmen
  • 刊物主题:Environment
    Waste Water Technology, Water Pollution Control, Water Management and Aquatic Pollution
    Geoecology and Natural Processes
    Monitoring, Environmental Analysis and Environmental Ecotoxicology
    Atmospheric Protection, Air Quality Control and Air Pollution
    Environmental Management
  • 出版者:Springer Berlin / Heidelberg
文摘
The integration of energy storage in electrical transmission and distribution grids is seen as the solution to secure the continuous supply of energy and increase stability and efficiency. The increasing presence of renewable energy sources with an intermittent and unpredictable behavior is threatening the balance between generation and demand that allows the stable operation of electrical power systems. Energy storage is the enabling technology to achieve the decoupling of generation and demand required to increase the share of renewable energies in the generation mix. The first part of this chapter presents the existing energy storage technologies, describing their main features and fields of application. In a second part, the particular case of concentration photovoltaic generation systems and their combination with a hybrid storage solution based on the integration of lead–acid batteries and ultracapacitors is presented.

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