Controle ressonante macro-micro para conversores de tensão CC-CA multinível

Detalhes bibliográficos
Autor(a) principal: Nery, Eduardo Gabe
Data de Publicação: 2019
Tipo de documento: Dissertação
Idioma: por
Título da fonte: Biblioteca Digital de Teses e Dissertações da PUC_RS
Texto Completo: http://tede2.pucrs.br/tede2/handle/tede/9030
Resumo: Power inverters convert direct current electricity into alternate current. Also called dcac converters, these devices generate discrete alternate waveforms. Therefore, they need inductive-capacitive (LC) low-pass filters connected to its output terminals in order to smooth the ac output waveform. The balance between total harmonic distortion (THD) filtering and the limitation of the switching frequency leads to bulky LC filters. Consequently, it increases the physical size of the system and its costs. This work proposes an alternative for THD attenuation in inverters by combining different stages. The main stage, the macro, comprises of a Neutral-Point-Clamped multilevel inverter operating in high voltage and low switching frequency. This converter is connected to a two-level three-phase inverter, called the micro actuator. The micro is faster and more accurate than the macro actuator due to its higher frequency and limited voltages and currents. In this macro-micro approach, the opposite characteristics of the converters lead the micro actuator to correct the distortions of the main stage, which works in open-loop with its switching signals generated by optimized pulse patterns. For correct THD filtering, feedforward and resonant control systems are designed in order to operate the auxiliary three-phase inverter. The control structure was evaluated through a set of simulations, using numerical models of the electric circuits of the studied converters. The simulation results demonstrate that the proposed control structure reduces THD on the load voltage waveforms.
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spelling Pimentel, Guilherme Araújohttp://lattes.cnpq.br/4103881426999031Rohr, Eduardo Rathhttp://lattes.cnpq.br/8385378606022677http://lattes.cnpq.br/9789411481362052Nery, Eduardo Gabe2019-11-21T13:50:44Z2019-08-22http://tede2.pucrs.br/tede2/handle/tede/9030Power inverters convert direct current electricity into alternate current. Also called dcac converters, these devices generate discrete alternate waveforms. Therefore, they need inductive-capacitive (LC) low-pass filters connected to its output terminals in order to smooth the ac output waveform. The balance between total harmonic distortion (THD) filtering and the limitation of the switching frequency leads to bulky LC filters. Consequently, it increases the physical size of the system and its costs. This work proposes an alternative for THD attenuation in inverters by combining different stages. The main stage, the macro, comprises of a Neutral-Point-Clamped multilevel inverter operating in high voltage and low switching frequency. This converter is connected to a two-level three-phase inverter, called the micro actuator. The micro is faster and more accurate than the macro actuator due to its higher frequency and limited voltages and currents. In this macro-micro approach, the opposite characteristics of the converters lead the micro actuator to correct the distortions of the main stage, which works in open-loop with its switching signals generated by optimized pulse patterns. For correct THD filtering, feedforward and resonant control systems are designed in order to operate the auxiliary three-phase inverter. The control structure was evaluated through a set of simulations, using numerical models of the electric circuits of the studied converters. The simulation results demonstrate that the proposed control structure reduces THD on the load voltage waveforms.Conversores estáticos de potência CC-CA são utilizados para converter energia elétrica sob a forma de corrente contínua em corrente alternada. Também chamados de inversores, estes dispositivos geram sinais alternados discretos, sendo usualmente necessária a conexão de filtros passa-baixa indutivo-capacitivos (LC) aos terminais de saída de forma a suavizar a tensão em CA desejada. A compensação entre filtragem de tensão de saída e limite de frequência de comutação pode levar a filtros LC grandes e volumosos, significando um aumento no tamanho físico do sistema e seu custo de implementação. Este trabalho propõe uma alternativa para atenuar distorções harmônicas em inversores a partir da combinação de diferentes estágios. Um destes estágios, trata-se de um inversor multinível a diodo grampeado operando em altos valores de tensão e corrente e baixa frequência de comutação. Este inversor, chamado atuador macro, está conectado a um inversor trifásico de dois níveis, chamado atuador micro, mais rápido e mais preciso que o inversor multinível devido à sua frequência de comutação elevada e com níveis de tensão e corrente mais limitados. Nesta abordagem macro-micro, as características opostas dos conversores fazem com que o inversor trifásico corrija as distorções do estágio principal, o qual opera em malha aberta com seus sinais de chaveamento gerados por Padrões de Pulso Otimizados. Para a correta atenuação das distorções harmônicas, o trabalho propõe operar o inversor trifásico a partir de sistemas de controle feedforward e múltiplo-ressonante. A estrutura composta por estes controladores foi validada a partir de uma série de simulações, usando modelos numéricos dos circuitos elétricos dos conversores estudados. Os resultados destas simulações demonstram que a estrutura de controle proposta reduz as distorções harmônicas da tensão de carga a níveis satisfatórios.Submitted by PPG Engenharia Elétrica (engenharia.pg.eletrica@pucrs.br) on 2019-11-19T18:23:34Z No. of bitstreams: 1 EDUARDO GABE NERY_DIS.pdf: 3926290 bytes, checksum: f80abd643a64dc3879b5528e6fc3a81a (MD5)Approved for entry into archive by Sheila Dias (sheila.dias@pucrs.br) on 2019-11-21T13:37:25Z (GMT) No. of bitstreams: 1 EDUARDO GABE NERY_DIS.pdf: 3926290 bytes, checksum: f80abd643a64dc3879b5528e6fc3a81a (MD5)Made available in DSpace on 2019-11-21T13:50:44Z (GMT). No. of bitstreams: 1 EDUARDO GABE NERY_DIS.pdf: 3926290 bytes, checksum: f80abd643a64dc3879b5528e6fc3a81a (MD5) Previous issue date: 2019-08-22application/pdfhttp://tede2.pucrs.br:80/tede2/retrieve/177270/EDUARDO%20GABE%20NERY_DIS.pdf.jpgporPontifícia Universidade Católica do Rio Grande do SulPrograma de Pós-Graduação em Engenharia ElétricaPUCRSBrasilEscola PolitécnicaAtuadores Macro-MicroControle FeedforwardControle RessonanteInversores MultinívelPadrões de Pulso OtimizadosDual-Stage ActuatorsFeedforward ControlMultilevel InvertersOptimized Pulse PatternsResonant ControlENGENHARIASControle ressonante macro-micro para conversores de tensão CC-CA multinívelinfo:eu-repo/semantics/publishedVersioninfo:eu-repo/semantics/masterThesisTrabalho não apresenta restrição para publicação-2660504109272820295005004518971056484826825info:eu-repo/semantics/openAccessreponame:Biblioteca Digital de Teses e Dissertações da PUC_RSinstname:Pontifícia Universidade Católica do Rio Grande do Sul (PUCRS)instacron:PUC_RSTHUMBNAILEDUARDO GABE NERY_DIS.pdf.jpgEDUARDO GABE NERY_DIS.pdf.jpgimage/jpeg4887http://tede2.pucrs.br/tede2/bitstream/tede/9030/4/EDUARDO+GABE+NERY_DIS.pdf.jpgd0b499eb154f20e75276b2e4ef2e24d9MD54TEXTEDUARDO GABE NERY_DIS.pdf.txtEDUARDO GABE NERY_DIS.pdf.txttext/plain134253http://tede2.pucrs.br/tede2/bitstream/tede/9030/3/EDUARDO+GABE+NERY_DIS.pdf.txt7a7f27651a5b341ae30f62ac36c23b21MD53ORIGINALEDUARDO GABE NERY_DIS.pdfEDUARDO GABE NERY_DIS.pdfapplication/pdf3926290http://tede2.pucrs.br/tede2/bitstream/tede/9030/2/EDUARDO+GABE+NERY_DIS.pdff80abd643a64dc3879b5528e6fc3a81aMD52LICENSElicense.txtlicense.txttext/plain; charset=utf-8590http://tede2.pucrs.br/tede2/bitstream/tede/9030/1/license.txt220e11f2d3ba5354f917c7035aadef24MD51tede/90302019-11-21 12:00:45.172oai:tede2.pucrs.br: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Biblioteca Digital de Teses e Dissertaçõeshttp://tede2.pucrs.br/tede2/PRIhttps://tede2.pucrs.br/oai/requestbiblioteca.central@pucrs.br||opendoar:2019-11-21T14:00:45Biblioteca Digital de Teses e Dissertações da PUC_RS - Pontifícia Universidade Católica do Rio Grande do Sul (PUCRS)false
dc.title.por.fl_str_mv Controle ressonante macro-micro para conversores de tensão CC-CA multinível
title Controle ressonante macro-micro para conversores de tensão CC-CA multinível
spellingShingle Controle ressonante macro-micro para conversores de tensão CC-CA multinível
Nery, Eduardo Gabe
Atuadores Macro-Micro
Controle Feedforward
Controle Ressonante
Inversores Multinível
Padrões de Pulso Otimizados
Dual-Stage Actuators
Feedforward Control
Multilevel Inverters
Optimized Pulse Patterns
Resonant Control
ENGENHARIAS
title_short Controle ressonante macro-micro para conversores de tensão CC-CA multinível
title_full Controle ressonante macro-micro para conversores de tensão CC-CA multinível
title_fullStr Controle ressonante macro-micro para conversores de tensão CC-CA multinível
title_full_unstemmed Controle ressonante macro-micro para conversores de tensão CC-CA multinível
title_sort Controle ressonante macro-micro para conversores de tensão CC-CA multinível
author Nery, Eduardo Gabe
author_facet Nery, Eduardo Gabe
author_role author
dc.contributor.advisor1.fl_str_mv Pimentel, Guilherme Araújo
dc.contributor.advisor1Lattes.fl_str_mv http://lattes.cnpq.br/4103881426999031
dc.contributor.advisor-co1.fl_str_mv Rohr, Eduardo Rath
dc.contributor.advisor-co1Lattes.fl_str_mv http://lattes.cnpq.br/8385378606022677
dc.contributor.authorLattes.fl_str_mv http://lattes.cnpq.br/9789411481362052
dc.contributor.author.fl_str_mv Nery, Eduardo Gabe
contributor_str_mv Pimentel, Guilherme Araújo
Rohr, Eduardo Rath
dc.subject.por.fl_str_mv Atuadores Macro-Micro
Controle Feedforward
Controle Ressonante
Inversores Multinível
Padrões de Pulso Otimizados
topic Atuadores Macro-Micro
Controle Feedforward
Controle Ressonante
Inversores Multinível
Padrões de Pulso Otimizados
Dual-Stage Actuators
Feedforward Control
Multilevel Inverters
Optimized Pulse Patterns
Resonant Control
ENGENHARIAS
dc.subject.eng.fl_str_mv Dual-Stage Actuators
Feedforward Control
Multilevel Inverters
Optimized Pulse Patterns
Resonant Control
dc.subject.cnpq.fl_str_mv ENGENHARIAS
description Power inverters convert direct current electricity into alternate current. Also called dcac converters, these devices generate discrete alternate waveforms. Therefore, they need inductive-capacitive (LC) low-pass filters connected to its output terminals in order to smooth the ac output waveform. The balance between total harmonic distortion (THD) filtering and the limitation of the switching frequency leads to bulky LC filters. Consequently, it increases the physical size of the system and its costs. This work proposes an alternative for THD attenuation in inverters by combining different stages. The main stage, the macro, comprises of a Neutral-Point-Clamped multilevel inverter operating in high voltage and low switching frequency. This converter is connected to a two-level three-phase inverter, called the micro actuator. The micro is faster and more accurate than the macro actuator due to its higher frequency and limited voltages and currents. In this macro-micro approach, the opposite characteristics of the converters lead the micro actuator to correct the distortions of the main stage, which works in open-loop with its switching signals generated by optimized pulse patterns. For correct THD filtering, feedforward and resonant control systems are designed in order to operate the auxiliary three-phase inverter. The control structure was evaluated through a set of simulations, using numerical models of the electric circuits of the studied converters. The simulation results demonstrate that the proposed control structure reduces THD on the load voltage waveforms.
publishDate 2019
dc.date.accessioned.fl_str_mv 2019-11-21T13:50:44Z
dc.date.issued.fl_str_mv 2019-08-22
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dc.publisher.none.fl_str_mv Pontifícia Universidade Católica do Rio Grande do Sul
dc.publisher.program.fl_str_mv Programa de Pós-Graduação em Engenharia Elétrica
dc.publisher.initials.fl_str_mv PUCRS
dc.publisher.country.fl_str_mv Brasil
dc.publisher.department.fl_str_mv Escola Politécnica
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