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SMOOTHING OF THE INTERMITTENT POWER PROVIDED BY WAVE POWER PLANTS USING ULTRACAPACITORS AND A NON-LINEAR VECTOR CURRENT CONTROLLED MMC

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JANUARY 2021   -  Volume: 96 -  Pages: 61-66

DOI:

http://dx.doi.org/10.6036/9850

Authors:

FERNANDO MARTINEZ RODRIGO
-
SANTIAGO DE PABLO GOMEZ
-
LUIS CARLOS HERRERO DE LUCAS
-
DIONISIO RAMIREZ

Disciplines:

  • Electrical technology and engineering (OTRAS (ESPECIFICAR) )

Downloads:   257

How to cite this paper:  
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Received Date :   9 July 2020

Reviewing Date :   14 July 2020

Accepted Date :   17 November 2020


Key words:
modular multilevel converter (MMC), non-linear vector current source, ultracapacitor, wave turbines, convertidor modular multinivel (MMC), fuente de corriente vectorial no lineal, ultracondensador, turbinas de onda.
Article type:
ARTICULO DE INVESTIGACION / RESEARCH ARTICLE
Section:
RESEARCH ARTICLES

This article focuses on smoothing the large power peaks that wave energy converters (WECs) inject into the electrical grid. The study is carried out for a single WEC where the generated power is delivered to the grid by means of a power converter. Two different measures have been considered to improve the power quality of the grid connection. Firstly, the electronic converter has been chosen a modular multilevel converter (MMC) to allow replacing the standard high voltage capacitors of the DC link by low voltage ultracapacitors distributed across the modules of the MMC. Secondly, the MMC is controlled using a non-linear vector current control. The results show that the power delivered to the grid becomes approximately constant when using ultracapacitors. Furthermore, the non-linear vector current source provides the grid connection converter with the necessary fast dynamic response to avoid large variations in the DC voltage.
Keywords: modular multilevel converter (MMC); non-linear vector current source; ultracapacitor; wave energy converter (WEC).

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