Arranjos de antenas para 5G com MIMO em ondas milim??tricas

Detalhes bibliográficos
Autor(a) principal: Boas, Evandro C??sar Vilas
Data de Publicação: 2019
Tipo de documento: Dissertação
Idioma: por
Título da fonte: Biblioteca Digital de Teses e Dissertações da INATEL
Texto Completo: https://tede.inatel.br:8080/tede/handle/tede/199
Resumo: This work reports the development of slotted waveguide antenna arrays (SWAA), operating in millimeter waves, for multiple-input and multiple-output (MIMO) systems and applied to the fifth-generation mobile networks (5G). Three distinct SWAAs have been proposed for spatial and polarization diversity, by using two identical elements with separation between 3 and 10 ??o. The following performance metrics have been considered: mutual coupling, active reflection coefficient, total active reflection coefficient, correlation coefficient, envelope correlation coefficient (ECC), total radiation efficiency and multiplexing efficiency. A dual-band switched-beam SWAA-based array has been developed for base stations MIMO applications. A second array was implemented to provide sectoral coverage at access points, with elements placed into a case similar of the Apple commercial airport model. Grooved metal structures were applied to the third SWAA to enhance its gain. Excellent agreement between theoretical and measured results has been observed in all cases. The dual-band switched-beam array demonstrated low mutual coupling as low as -36 dB and ECC less than -40 dB for the 28 and 38 GHz operating bands. These parameters were equal to -40 and -50 dB, respectively, for the second array with operation in the 28 GHz band. The high-gain SWAA with metal grooved-structures provided 8.47% (25.54???27.80 GHz) measured fractional bandwidth, gain from 26.6 to 27.7 dBi and half-power beamwidth in the azimuth and elevation planes equal to 10?? and 3??, respectively. The metal grooved-structures enhanced the SWAA gain in 9 dB, resulting in a high-gain array with a simple feeding system.
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spelling J??nior, Arismar Cerqueira Sodr??945.507.195-91http://lattes.cnpq.br/1703406475581759J??nior, Arismar Cerqueira Sodr??945.507.195-91http://lattes.cnpq.br/1703406475581759Ribeiro , Jos?? Ant??nio Justino012.620.256-72http://lattes.cnpq.br/9987344139958522Capovilla, Carlos Eduardohttp://lattes.cnpq.br/4513328674134331Brito, Jos?? Marcos C??mara495.450.866-53http://lattes.cnpq.br/0370383210890132121.836.616-82Boas, Evandro C??sar Vilas2020-03-02T13:38:57Z2019-12-04Boas, Evandro C??sar Vilas. Arranjos de antenas para 5G com MIMO em ondas milim??tricas. 2019. [135]. disserta????o( Mestrado em Engenharia de Telecomunica????es) - Instituto Nacional de Telecomunica????es, [Santa Rita do Sapucai] .https://tede.inatel.br:8080/tede/handle/tede/199This work reports the development of slotted waveguide antenna arrays (SWAA), operating in millimeter waves, for multiple-input and multiple-output (MIMO) systems and applied to the fifth-generation mobile networks (5G). Three distinct SWAAs have been proposed for spatial and polarization diversity, by using two identical elements with separation between 3 and 10 ??o. The following performance metrics have been considered: mutual coupling, active reflection coefficient, total active reflection coefficient, correlation coefficient, envelope correlation coefficient (ECC), total radiation efficiency and multiplexing efficiency. A dual-band switched-beam SWAA-based array has been developed for base stations MIMO applications. A second array was implemented to provide sectoral coverage at access points, with elements placed into a case similar of the Apple commercial airport model. Grooved metal structures were applied to the third SWAA to enhance its gain. Excellent agreement between theoretical and measured results has been observed in all cases. The dual-band switched-beam array demonstrated low mutual coupling as low as -36 dB and ECC less than -40 dB for the 28 and 38 GHz operating bands. These parameters were equal to -40 and -50 dB, respectively, for the second array with operation in the 28 GHz band. The high-gain SWAA with metal grooved-structures provided 8.47% (25.54???27.80 GHz) measured fractional bandwidth, gain from 26.6 to 27.7 dBi and half-power beamwidth in the azimuth and elevation planes equal to 10?? and 3??, respectively. The metal grooved-structures enhanced the SWAA gain in 9 dB, resulting in a high-gain array with a simple feeding system.Este trabalho apresenta o desenvolvimento de arranjos de antenas em guia de onda fendido (slotted waveguide antenna array, SWAA) para sistemas de 5?? gera????o de telefonia m??vel (5G) com MIMO (multiple-input and multiple-output), operando em ondas milim??tricas. Avaliam-se tr??s arranjos de antenas em guia de onda fendido aplicados ?? diversidade espacial e de polariza????o com dois elementos id??nticos e separa????o entre 3 e 10 ??o. Realiza-se a an??lise de desempenho dos arranjos em fun????o das seguintes m??tricas: acoplamento m??tuo, coeficiente de reflex??o ativo, coeficiente de reflex??o ativo total, coeficiente de correla????o, envolt??ria do coeficiente de correla????o (ECC), efici??ncia de irradia????o total e efici??ncia de multiplexa????o. Destaca-se um arranjo de elementos SWAA com banda dupla e comuta????o de feixe e um outro para cobertura setorial em pontos de acesso, sendo os elementos aplicados ?? um case semelhante ao modelo comercial Airport da empresa Apple. Por fim, o terceiro SWAA baseia-se na integra????o de ranhuras met??licas ?? sua estrutura, com a finalidade de aumento de ganho. De modo geral, observou-se ??tima concord??ncia entre os resultados te??ricos e experimentais. O SWAA com banda dupla e comuta????o de feixe apresentou n??veis de acoplamento m??tuo inferiores a -36 dB e ECC inferior a -40 dB para as duas faixas de frequ??ncia de interesse (28 e 38 GHz.). Para o segundo arranjo, esses valores foram respectivamente iguais a ???40 dB e ???50 dB para a banda de opera????o em 28 GHz. O SWAA com ranhuras met??licas apresentou banda fracion??ria de 8,47% (25,54???27,80 GHz), ganhos entre 26,6 e 27,7 dBi para a faixa de opera????o e aberturas de feixe de meia pot??ncia de 10?? e 3?? nos planos de azimute e eleva????o, respectivamente. A aplica????o das ranhuras met??licas proveu aumento de ganho de 9 dB, corroborando para um arranjo de alto ganho com sistema de excita????o simples.Submitted by Tede Dspace (tede@inatel.br) on 2020-03-02T13:38:57Z No. of bitstreams: 2 license_rdf: 0 bytes, checksum: d41d8cd98f00b204e9800998ecf8427e (MD5) Disserta????o V.Final Evandro C??sar Vilas Boas.pdf: 10228891 bytes, checksum: bed04714c98b38fa03cedf917910cc93 (MD5)Made available in DSpace on 2020-03-02T13:38:57Z (GMT). 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dc.title.por.fl_str_mv Arranjos de antenas para 5G com MIMO em ondas milim??tricas
title Arranjos de antenas para 5G com MIMO em ondas milim??tricas
spellingShingle Arranjos de antenas para 5G com MIMO em ondas milim??tricas
Boas, Evandro C??sar Vilas
5G; antenas; arranjos de antenas em guia de onda fendido; MIMO; ondas milim??tricas
5G; antenna; slotted waveguide antenna array; MIMO; millimeter waves
Engenharia - Telecomunica????es
title_short Arranjos de antenas para 5G com MIMO em ondas milim??tricas
title_full Arranjos de antenas para 5G com MIMO em ondas milim??tricas
title_fullStr Arranjos de antenas para 5G com MIMO em ondas milim??tricas
title_full_unstemmed Arranjos de antenas para 5G com MIMO em ondas milim??tricas
title_sort Arranjos de antenas para 5G com MIMO em ondas milim??tricas
author Boas, Evandro C??sar Vilas
author_facet Boas, Evandro C??sar Vilas
author_role author
dc.contributor.advisor1.fl_str_mv J??nior, Arismar Cerqueira Sodr??
dc.contributor.advisor1ID.fl_str_mv 945.507.195-91
dc.contributor.advisor1Lattes.fl_str_mv http://lattes.cnpq.br/1703406475581759
dc.contributor.referee1.fl_str_mv J??nior, Arismar Cerqueira Sodr??
dc.contributor.referee1ID.fl_str_mv 945.507.195-91
dc.contributor.referee1Lattes.fl_str_mv http://lattes.cnpq.br/1703406475581759
dc.contributor.referee2.fl_str_mv Ribeiro , Jos?? Ant??nio Justino
dc.contributor.referee2ID.fl_str_mv 012.620.256-72
dc.contributor.referee2Lattes.fl_str_mv http://lattes.cnpq.br/9987344139958522
dc.contributor.referee3.fl_str_mv Capovilla, Carlos Eduardo
dc.contributor.referee3Lattes.fl_str_mv http://lattes.cnpq.br/4513328674134331
dc.contributor.referee4.fl_str_mv Brito, Jos?? Marcos C??mara
dc.contributor.referee4ID.fl_str_mv 495.450.866-53
dc.contributor.referee4Lattes.fl_str_mv http://lattes.cnpq.br/0370383210890132
dc.contributor.authorID.fl_str_mv 121.836.616-82
dc.contributor.author.fl_str_mv Boas, Evandro C??sar Vilas
contributor_str_mv J??nior, Arismar Cerqueira Sodr??
J??nior, Arismar Cerqueira Sodr??
Ribeiro , Jos?? Ant??nio Justino
Capovilla, Carlos Eduardo
Brito, Jos?? Marcos C??mara
dc.subject.por.fl_str_mv 5G; antenas; arranjos de antenas em guia de onda fendido; MIMO; ondas milim??tricas
topic 5G; antenas; arranjos de antenas em guia de onda fendido; MIMO; ondas milim??tricas
5G; antenna; slotted waveguide antenna array; MIMO; millimeter waves
Engenharia - Telecomunica????es
dc.subject.eng.fl_str_mv 5G; antenna; slotted waveguide antenna array; MIMO; millimeter waves
dc.subject.cnpq.fl_str_mv Engenharia - Telecomunica????es
description This work reports the development of slotted waveguide antenna arrays (SWAA), operating in millimeter waves, for multiple-input and multiple-output (MIMO) systems and applied to the fifth-generation mobile networks (5G). Three distinct SWAAs have been proposed for spatial and polarization diversity, by using two identical elements with separation between 3 and 10 ??o. The following performance metrics have been considered: mutual coupling, active reflection coefficient, total active reflection coefficient, correlation coefficient, envelope correlation coefficient (ECC), total radiation efficiency and multiplexing efficiency. A dual-band switched-beam SWAA-based array has been developed for base stations MIMO applications. A second array was implemented to provide sectoral coverage at access points, with elements placed into a case similar of the Apple commercial airport model. Grooved metal structures were applied to the third SWAA to enhance its gain. Excellent agreement between theoretical and measured results has been observed in all cases. The dual-band switched-beam array demonstrated low mutual coupling as low as -36 dB and ECC less than -40 dB for the 28 and 38 GHz operating bands. These parameters were equal to -40 and -50 dB, respectively, for the second array with operation in the 28 GHz band. The high-gain SWAA with metal grooved-structures provided 8.47% (25.54???27.80 GHz) measured fractional bandwidth, gain from 26.6 to 27.7 dBi and half-power beamwidth in the azimuth and elevation planes equal to 10?? and 3??, respectively. The metal grooved-structures enhanced the SWAA gain in 9 dB, resulting in a high-gain array with a simple feeding system.
publishDate 2019
dc.date.issued.fl_str_mv 2019-12-04
dc.date.accessioned.fl_str_mv 2020-03-02T13:38:57Z
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dc.identifier.citation.fl_str_mv Boas, Evandro C??sar Vilas. Arranjos de antenas para 5G com MIMO em ondas milim??tricas. 2019. [135]. disserta????o( Mestrado em Engenharia de Telecomunica????es) - Instituto Nacional de Telecomunica????es, [Santa Rita do Sapucai] .
dc.identifier.uri.fl_str_mv https://tede.inatel.br:8080/tede/handle/tede/199
identifier_str_mv Boas, Evandro C??sar Vilas. Arranjos de antenas para 5G com MIMO em ondas milim??tricas. 2019. [135]. disserta????o( Mestrado em Engenharia de Telecomunica????es) - Instituto Nacional de Telecomunica????es, [Santa Rita do Sapucai] .
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dc.publisher.department.fl_str_mv Instituto Nacional de Telecomunica????es
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