Implementa??o de medi??es automatizadas de interfer?ncias eletromagn?ticas

Detalhes bibliográficos
Autor(a) principal: Magalh?es, Gilberto Vilas Boas
Data de Publicação: 2008
Tipo de documento: Dissertação
Idioma: por
Título da fonte: Biblioteca Digital de Teses e Dissertações da INATEL
Texto Completo: http://tede.inatel.br:8080/tede/handle/tede/136
Resumo: Electromagnetic compatibility (EMC) is the capability of an electrical device or system to operate in its electromagnetic environment, without disturbing or being disturbed by it. The aim of this thesis is to study the electromagnetic susceptibility, and electromagnetic interference experiments, developing software to measure the radiation and conducted emission. A predominant factor for the development programs in measurements of radiated and conducted emission relates with sweep time, applying quasi peak and average detectors for the signal measured through the spectrum analyzer. That equipment was available and used as a reference one. Domestic and international standards show the values and frequency range for the experiment, determined with the detectors, specified for each case. As the level with the peak detector is always greater or equal to the obtained with quasi peak and average detectors, there is a possibility to make experiment. It takes place by using the peak detector, whose sweep time is less than the other type. A developed program using LabViewTM compares the measurements among the specified limit. If exceeding, this value would perform the measurement only for those frequencies. For the conducted emission, it is determined the disturbances at the power supply wires, with the line impedance stabilization network (LISN) connected to the spectrum analyzer. The radiation emissions are performed with the equipment under test inside the anechoic chamber, in a known distance from the antenna. The electric field intensity is determined from antenna data sheet that includes the gain and antenna factor, it must be calibrated. These data are used by programs to convert the measurement level to electric field intensity.
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spelling Ribeiro, Jos? Ant?nio Justino012.620.256-72http://lattes.cnpq.br/9987344139958522Ribeiro, Jos? Ant?nio Justino012.620.256-72http://lattes.cnpq.br/9987344139958522Guimar?es, Dayan Adionel739.337.836-15http://lattes.cnpq.br/2503439503631682Portelinha, Francisco Martinshttp://lattes.cnpq.br/2508953043452613725.266.616-68http://lattes.cnpq.br/1189415245115458Magalh?es, Gilberto Vilas Boas2017-03-27T17:13:56Z2008-03-13Magalh?es, Gilberto Vilas Boas. Implementa??o de medi??es automatizadas de interfer?ncias eletromagn?ticas. 2008. [105]. disserta??o( Mestrado em Engenharia de Telecomunica??es) - Instituto Nacional de Telecomunica??es, [Santa Rita do Sapuca?] .http://tede.inatel.br:8080/tede/handle/tede/136Electromagnetic compatibility (EMC) is the capability of an electrical device or system to operate in its electromagnetic environment, without disturbing or being disturbed by it. The aim of this thesis is to study the electromagnetic susceptibility, and electromagnetic interference experiments, developing software to measure the radiation and conducted emission. A predominant factor for the development programs in measurements of radiated and conducted emission relates with sweep time, applying quasi peak and average detectors for the signal measured through the spectrum analyzer. That equipment was available and used as a reference one. Domestic and international standards show the values and frequency range for the experiment, determined with the detectors, specified for each case. As the level with the peak detector is always greater or equal to the obtained with quasi peak and average detectors, there is a possibility to make experiment. It takes place by using the peak detector, whose sweep time is less than the other type. A developed program using LabViewTM compares the measurements among the specified limit. If exceeding, this value would perform the measurement only for those frequencies. For the conducted emission, it is determined the disturbances at the power supply wires, with the line impedance stabilization network (LISN) connected to the spectrum analyzer. The radiation emissions are performed with the equipment under test inside the anechoic chamber, in a known distance from the antenna. The electric field intensity is determined from antenna data sheet that includes the gain and antenna factor, it must be calibrated. These data are used by programs to convert the measurement level to electric field intensity.A compatibilidade eletromagn?tica (EMC) ? a capacidade de um dispositivo el?trico ou um sistema de operar em seu ambiente eletromagn?tico sem provocar dist?rbio ou ser perturbado. O objetivo deste trabalho ? estudar dos ensaios de susceptibilidade eletromagn?tico e interfer?ncia eletromagn?tica desenvolvendo programas para as medidas de emiss?o irradiada e conduzida. Um fator predominante em medi??es de emiss?o irradiada e conduzida relacionase ao tempo de varredura, com emprego de detectores de quase pico e de n?vel m?dio para o sinal a ser usado no analisador de espectros. Utilizou-se como refer?ncia o equipamento dispon?vel no laborat?rio de medi??es. Normas nacionais e internacionais estabelecem os valores e faixas de freq??ncia para os ensaios, determinados com emprego de detectores espec?ficos para cada caso. Como a amplitude medida com o detector de pico ? sempre maior ou igual ? obtida com detectores de quase pico e de n?vel m?dio, existe possibilidade de realiza??o dos ensaios. Efetua-se a varredura com detector de pico, que exige um tempo muito menor do que dos outros detectores. Um programa desenvolvido com o LabViewTM compara as medidas com os limites estabelecidos por normas. Caso sejam ultrapassados, realizam-se medi??es para as freq??ncias em que o fato ocorrer. Para a emiss?o conduzida, determinam-se as perturba??es nos terminais de energia el?trica, empregando- se uma rede de estabiliza??o de imped?ncia (LISN) como interface com o analisador de espectros. Os ensaios de emiss?o irradiada s?o realizados com o equipamento sob an?lise (EUT) no interior de uma c?mara anec?ica, a uma dist?ncia conhecida da antena. Para se determinar a intensidade de campo el?trico, a antena deve estar calibrada. Isto ? verificado a partir das especifica??es de diversas caracter?sticas, como o ganho, o comprimento efetivo e o fator da antena. Desses valores, o programa efetua a convers?o da tens?o medida para a intensidade de campo el?trico.Submitted by Tede Dspace (tede@inatel.br) on 2017-03-27T17:13:56Z No. of bitstreams: 2 license_rdf: 0 bytes, checksum: d41d8cd98f00b204e9800998ecf8427e (MD5) diss. Gilberto.pdf: 1412172 bytes, checksum: ebd309c72c6cd6aa82c2c2603d4b333b (MD5)Made available in DSpace on 2017-03-27T17:13:56Z (GMT). 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dc.title.por.fl_str_mv Implementa??o de medi??es automatizadas de interfer?ncias eletromagn?ticas
title Implementa??o de medi??es automatizadas de interfer?ncias eletromagn?ticas
spellingShingle Implementa??o de medi??es automatizadas de interfer?ncias eletromagn?ticas
Magalh?es, Gilberto Vilas Boas
Automa??o de medidas; interfer?ncia eletromagn?tica.
Engenharia - Telecomunica??es
title_short Implementa??o de medi??es automatizadas de interfer?ncias eletromagn?ticas
title_full Implementa??o de medi??es automatizadas de interfer?ncias eletromagn?ticas
title_fullStr Implementa??o de medi??es automatizadas de interfer?ncias eletromagn?ticas
title_full_unstemmed Implementa??o de medi??es automatizadas de interfer?ncias eletromagn?ticas
title_sort Implementa??o de medi??es automatizadas de interfer?ncias eletromagn?ticas
author Magalh?es, Gilberto Vilas Boas
author_facet Magalh?es, Gilberto Vilas Boas
author_role author
dc.contributor.advisor1.fl_str_mv Ribeiro, Jos? Ant?nio Justino
dc.contributor.advisor1ID.fl_str_mv 012.620.256-72
dc.contributor.advisor1Lattes.fl_str_mv http://lattes.cnpq.br/9987344139958522
dc.contributor.referee1.fl_str_mv Ribeiro, Jos? Ant?nio Justino
dc.contributor.referee1ID.fl_str_mv 012.620.256-72
dc.contributor.referee1Lattes.fl_str_mv http://lattes.cnpq.br/9987344139958522
dc.contributor.referee2.fl_str_mv Guimar?es, Dayan Adionel
dc.contributor.referee2ID.fl_str_mv 739.337.836-15
dc.contributor.referee2Lattes.fl_str_mv http://lattes.cnpq.br/2503439503631682
dc.contributor.referee3.fl_str_mv Portelinha, Francisco Martins
dc.contributor.referee3Lattes.fl_str_mv http://lattes.cnpq.br/2508953043452613
dc.contributor.authorID.fl_str_mv 725.266.616-68
dc.contributor.authorLattes.fl_str_mv http://lattes.cnpq.br/1189415245115458
dc.contributor.author.fl_str_mv Magalh?es, Gilberto Vilas Boas
contributor_str_mv Ribeiro, Jos? Ant?nio Justino
Ribeiro, Jos? Ant?nio Justino
Guimar?es, Dayan Adionel
Portelinha, Francisco Martins
dc.subject.por.fl_str_mv Automa??o de medidas; interfer?ncia eletromagn?tica.
topic Automa??o de medidas; interfer?ncia eletromagn?tica.
Engenharia - Telecomunica??es
dc.subject.cnpq.fl_str_mv Engenharia - Telecomunica??es
description Electromagnetic compatibility (EMC) is the capability of an electrical device or system to operate in its electromagnetic environment, without disturbing or being disturbed by it. The aim of this thesis is to study the electromagnetic susceptibility, and electromagnetic interference experiments, developing software to measure the radiation and conducted emission. A predominant factor for the development programs in measurements of radiated and conducted emission relates with sweep time, applying quasi peak and average detectors for the signal measured through the spectrum analyzer. That equipment was available and used as a reference one. Domestic and international standards show the values and frequency range for the experiment, determined with the detectors, specified for each case. As the level with the peak detector is always greater or equal to the obtained with quasi peak and average detectors, there is a possibility to make experiment. It takes place by using the peak detector, whose sweep time is less than the other type. A developed program using LabViewTM compares the measurements among the specified limit. If exceeding, this value would perform the measurement only for those frequencies. For the conducted emission, it is determined the disturbances at the power supply wires, with the line impedance stabilization network (LISN) connected to the spectrum analyzer. The radiation emissions are performed with the equipment under test inside the anechoic chamber, in a known distance from the antenna. The electric field intensity is determined from antenna data sheet that includes the gain and antenna factor, it must be calibrated. These data are used by programs to convert the measurement level to electric field intensity.
publishDate 2008
dc.date.issued.fl_str_mv 2008-03-13
dc.date.accessioned.fl_str_mv 2017-03-27T17:13:56Z
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dc.identifier.citation.fl_str_mv Magalh?es, Gilberto Vilas Boas. Implementa??o de medi??es automatizadas de interfer?ncias eletromagn?ticas. 2008. [105]. disserta??o( Mestrado em Engenharia de Telecomunica??es) - Instituto Nacional de Telecomunica??es, [Santa Rita do Sapuca?] .
dc.identifier.uri.fl_str_mv http://tede.inatel.br:8080/tede/handle/tede/136
identifier_str_mv Magalh?es, Gilberto Vilas Boas. Implementa??o de medi??es automatizadas de interfer?ncias eletromagn?ticas. 2008. [105]. disserta??o( Mestrado em Engenharia de Telecomunica??es) - Instituto Nacional de Telecomunica??es, [Santa Rita do Sapuca?] .
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