Proteção diferencial do DFIG com separação de componentes de sequência do estator e do rotor

With the increasing interest in renewable energy in the world, the importance of research in wind energy, associated methods and technologies have grown. The increase in wind turbines connected to electrical systems also brought new challenges related to the stability of the system and protection of...

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Autor principal: Queiroz, Janailson Maciel de
Outros Autores: Barros, Luciano Sales
Formato: Dissertação
Idioma:pt_BR
Publicado em: Universidade Federal do Rio Grande do Norte
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Endereço do item:https://repositorio.ufrn.br/handle/123456789/46473
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Resumo:With the increasing interest in renewable energy in the world, the importance of research in wind energy, associated methods and technologies have grown. The increase in wind turbines connected to electrical systems also brought new challenges related to the stability of the system and protection of its components. Differential protection is used in many components of electrical systems and for wind turbines based on DFIG this protection was recently proposed. Therefore, this work proposes a new DFIG differential protection scheme using the current sequence components: positive, negative stator and negative rotor. In a simulation with DFIG operating with 1.51 MW, tests of internal and external faults to the protection zone were carried out, of the single-phase and three-phase type, with different levels of voltage drops. Inter-turn faults in the machine rotor and stator were also tested with various levels of failure. Thus, with the proper definition of the operation logic, it was possible to show the effectiveness of the protection, with detection for all faults in the network within the protection zone, considering faults in stator and rotor windings with 5% failure or more.