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IMPACT OF STATIC VAR COMPENSATOR (SVC) ON WIND FARMS BASED IN DIFFERENT TYPES OF INDUCTION GENERATORS DURING GRID FAULTS

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JANUARY-DECEMBER 2017   -  Volume: 6 -  Pages: [12 p.]

DOI:

https://doi.org/10.6036/ES8338

Authors:

AHMED RASHAD - SALAH KAMEL - FRANCISCO JURADO MELGUIZO

Disciplines:

  • Electrical technology and engineering (TRANSMISION Y DISTRIBUCION )

Downloads:   83

How to cite this paper:  
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Received Date :   13 March 2017

Reviewing Date :   20 March 2017

Accepted Date :   17 May 2017


Key words:
Generador de inducción de jaula de ardilla, generador de inducción doblemente alimentado, parque eólico híbrido, Compensador Estático Síncrono, Squirrel cage induction generator, doubly-fed induction generator, Hybrid wind farm, Static Var Compensator
Article type:
ARTICULO DE INVESTIGACION / RESEARCH ARTICLE
Section:
RESEARCH ARTICLES

ABSTRACT:
Due to the increase of wind energy penetration into electrical grid, installing wind farms faces many challenges. Continuity of wind farms connection to grid or at least reconnection after clearance of grid faults is considered most important one. However, the Flexible AC transmission systems (FACTS) devices can be used as auxiliary equipment to solve such challenges. This paper studies the impact of Static Var Compensator (SVC) on performance of three different types of wind farms during grid faults. The first wind farm is based on squirrel cage induction generator (SCIG); the second wind farm is based on doubly-fed induction generator (DFIG) and last wind farm is hybrid wind farm (HWF) that based on a combination between an equal numbers of SCIG and DFIG. The HWF is developed to collect the main benefits of SCIG and DFIG. Where, SCIG is considered cheaper than DFIG, while, DFIG is considered expensive than SCIG. However, the developed HWF with SVC shows good performance during grid faults. All test cases are carried out using MATLAB SIMULINK program.

Keywords: SCIG, DFIG, Hybrid wind farm and SVC.

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