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A review of energy storage technologie sfor marine current energy systems

Article dans une revue avec comité de lecture
Auteur
ZHOU, Zhibin
BENBOUZID, Mohamed
55607 Laboratoire brestois de mécanique et des systèmes [LBMS]
CHARPENTIER, Jean-Frederic
ccSCUILLER, Franck
13094 Institut de Recherche de l'Ecole Navale [IRENAV]
TANG, Tianhao

URI
http://hdl.handle.net/10985/8703
DOI
10.1016/j.rser.2012.10.006
Date
2013
Journal
Renewable and Sustainable Energy Reviews

Résumé

Increasing concerns about the depletion of fossil resources and the issue of environment lead to a global need for producing more clean energy from renewable sources. Ocean is appreciated as a vast source of renewable energies. Considering marine renewable energies, it can be noticed that significant electrical power can be extracted from marine tidal currents. However, the power harnessed from marine tidal currents is highly fluctuant due to the swell effect and the periodicity of the tidal phenomenon. To improve the power quality and make the marine generation system more reliable, energy storage systems can play a crucial role. In this paper, an overview and the state of art of energy storage technologies are presented. Characteristics of various energy storage technologies are analyzed and compared for this particular application. The comparison shows that high-energy batteries like sodium–sulphur battery and flow battery are favorable for smoothing the long-period power fluctuation due to the tide phenomenon while supercapacitor and flywheel are more suitable for eliminating short-period power disturbances due to swell or turbulence phenomena. This means that hybrid storage technologies are needed for achieving optimal results in tidal marine current energy applications.

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  • Institut de Recherche de l’École navale (IRENAV)

Documents liés

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  • Power Control of a Nonpitchable PMSG-Based Marine Current Turbine at Overrated Current Speed With Flux-Weakening Strategy 
    Article dans une revue avec comité de lecture
    ZHOU, Zhibin; ccSCUILLER, Franck; CHARPENTIER, Jean-Frederic; BENBOUZID, Mohamed; TANG, Tianhao (Institute of Electrical and Electronics Engineers, 2014)
    This paper deals with power control strategies for a fixed-pitch direct drive marine current turbine (MCT) when the marine current velocity exceeds the rated value corresponding to the MCT nominal power. At over-rated ...
  • Power Limitation Control for a PMSG-Based Marine Current Turbine at High Tidal Speed and Strong Sea State 
    Communication avec acte
    ZHOU, Zhibin; ccSCUILLER, Franck; CHARPENTIER, Jean-Frederic; BENBOUZID, Mohamed; TANG, Tianhao (IEEE, 2013)
    This paper deals with the control strategies for a fixed-pitch marine current turbine (MCT) when the marine current speed exceeds the rated value corresponding to the rated power of generator and converter. Over-rated ...
  • An Up - to - Date Review of Large Marine Tidal Current Turbine Technologies 
    Communication avec acte
    ZHOU, Zhibin; ccSCUILLER, Franck; CHARPENTIER, Jean-Frederic; BENBOUZID, Mohamed; TANG, Tianhao (IEEE, 2014)
    Owning to the predictability of tidal current resources, marine tidal current energy is considered to be a reliable and promising renewable power source for coastal areas or some remote islands. During the last 10 years, ...
  • Grid-Connected Marine Current Generation System Power Smoothing Control Using Supercapacitors 
    Communication avec acte
    ZHOU, Zhibin; ccSCUILLER, Franck; CHARPENTIER, Jean-Frederic; BENBOUZID, Mohamed; TANG, Tianhao (IEEE, 2012)
    Swell is the main disturbance for marine tidal speed. The power harnessed by a marine current turbine (MCT) can be highly fluctuant due to swell effect. Conventional Maximum Power Point Tracking (MPPT) algorithm will require ...
  • Energy Storage Technologies for Smoothing Power Fluctuations in Marine Current Turbines 
    Communication avec acte
    ZHOU, Zhibin; BENBOUZID, Mohamed; CHARPENTIER, Jean-Frederic; ccSCUILLER, Franck; TANG, Tianhao (IEEE, 2012)
    With regard to marine renewable energies, significant electrical power can be extracted from marine tidal current. However, the power harnessed by a marine current turbine varies due to the periodicity of the tidal phenomenon ...

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