Please use this identifier to cite or link to this item: http://repositorio.ufc.br/handle/riufc/65105
Type: Artigo de Evento
Title: Power Control for a Wind Power Generation from SCIG and Harmonic Current Filtering
Title in English: Power Control for a Wind Power Generation from SCIG and Harmonic Current Filtering
Authors: Santos, Ângelo Marcílio Marques dos
Pacífico, Ricardo Parcelle Cardoso
Silva, Leonardo Pires de Sousa
França, Marcos Vinícius Soares de
Teixeira, Vanessa Siqueira de Castro
Moreira, Adson Bezerra
Keywords: Electric power generation;Electronic back-to-back converter;SCIG;Wind energy;Active power filter;THD
Issue Date: 2020
Publisher: Sociedade Brasileira de Automática (SBA) - https://www.sba.org.br/; Galoá Science - https://galoa.com.br/ - https://cba2020.galoa.com.br/
Citation: SANTOS, Ângelo Marcílio Marques dos; PACÍFICO, Ricardo Parcelle Cardoso; SILVA, Leonardo Pires de Sousa; FRANÇA, Marcos Vinícius Soares de; TEIXEIRA, Vanessa Siqueira de Castro; MOREIRA, Adson Bezerra. Power control for a wind power Generation from SCIG and harmonic current filtering. In: CONGRESSO BRASILEIRO DE AUTOMÁTICA, XXIII., 23 e 26 de Novembro de 2020, Online. Anais[…], Campinas, Galoá, v. 2 , n. 1, 2020. CBA2020. DOI: 10.48011/asba.v2i1.1051
Abstract: The main contribution of this paper is to present a proposal for the development of an active power filter (APF) for a wind power generation system connected to the electric grid, using the three-phase induction generator with squirrel cage rotor (SCIG). In the induction generator side converter (IGSC) the power control is done by the magnetizing current and electromagnetic torque in coordinates dq. Thus, the wind system controls the active and reactive powers, as well as performing the active filtering function in the grid currents. Harmonic compensation is performed by an algorithm applied to the grid side converter (GSC). That technique improves the power quality and keeps the voltage at DC bus. The studied system was mathematically modeled and simulated using the Matlab / Simulink software. When SCIG provides 2 kW of active power, the THD from 18,94% (without APF) was reduced to 3,93% for GSC operating with APF function.
URI: http://www.repositorio.ufc.br/handle/riufc/65105
ISSN: 2525-8311
DOI: https://doi.org/10.48011/asba.v2i1.1051
Appears in Collections:DEEL - Trabalhos apresentados em eventos

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