RIS Development and Implementation in a mm-waves 5G NR System Towards 6G
| Ano de defesa: | 2023 |
|---|---|
| Autor(a) principal: | |
| Orientador(a): | |
| Banca de defesa: | , , , |
| Tipo de documento: | Tese |
| Tipo de acesso: | Acesso aberto |
| Idioma: | eng |
| Instituição de defesa: |
Instituto Nacional de Telecomunica????es
|
| Programa de Pós-Graduação: |
Mestrado em Engenharia de Telecomunica????es
|
| Departamento: |
Instituto Nacional de Telecomunica????es
|
| País: |
Brasil
|
| Palavras-chave em Inglês: | |
| Área do conhecimento CNPq: | |
| Link de acesso: | https://tede.inatel.br:8080/tede/handle/tede/247 |
Resumo: | This work presents the conception and development of a novel 1024-element reconfigurable intelligent surface (RIS), using split-ring resonator (SRR) based 2-bit unit cells and tuned by varactor diodes in the millimeter waves (mm-waves) frequency band at 24.5 GHz with 400 MHz bandwidth. The RIS printed unit cell has been conceived using the full-wave electromagnetic solver ANSYS HFSS, comprising four layers based on two different substrates from Rogers, namely: 0.508-mm thick RO3003 and 0.1-mm thick bonding RO4450. The entire unit cell element encompasses four conducting layers, in which the first two ones form the SRR, whereas RF chokes are printed at the middle layer to isolate the DC circuit and the bias lines are routed at the fourth layer, resulting in a 0.245x0.245 ?? 2 total area. The 2-bit unit cell measured resonance frequency ranges from 22.4 to 25.52 GHz, resulting in a phase shifting greater than 270?? at 24.5 GHz. The proposed 2-bit RIS design uses the finite array domain decomposition method (FADDM) and radar cross-section (RCS) approachesin ANSYS HFSS. Beam steering generation from -60?? to 60?? in the azimuth plane is achieved by the 1024 elements arranged in a 32x32 matrix with a linear gradient phase controlled columnwise. The proposed RIS is characterized by reflection pattern performance under different incident wave angle conditions and beam steering angles. Reflection patterns from 30?? to 60?? are experimentally demonstrated with a scan loss of 4.1 dB. Additionally, a low-power consumption RIS control board is proposed and fabricated using a standard microcontroller, single-pole four-throw (SP4T) switches, digital-to-analog converters (DAC) and I/O expanders, resulting in an average power consumption of only 331 mW. Using the same transversal dimensions for the RIS and control board gives rise to a compact solution with 103x120x14 mm3 total area. Finally, a demonstrator is presented using the proposed mm-waves RIS in an indoor environment using a real 5G New Radio (NR) signal and following the 3 rd Generation Partnership Project (3GPP) Release 18 performance requirements. Such experiment uses a 64-quadrature amplitude modulation (QAM) 5G-NR signal at 24.5 GHz with a bandwidth of up to 400 MHz, achieving a maximum throughput of 1.2 Gbps. The RIS deployment results in a channel power and signal-to-noise ratio (SNR) improvement of 21.5 and 23.8 dB, respectively. |
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J??nior, Arismar Cerqueira945.507.195-91http://lattes.cnpq.br/1703406475581759J??nior, Arismar Cerqueira945.507.195-91http://lattes.cnpq.br/1703406475581759Xiao, PeiMittra, RajRibeiro, Jos?? Ant??nio012.620.256-72http://lattes.cnpq.br/99873441399585226383736364343966http://lattes.cnpq.br/6383736364343966Silva, Luiz Gustavo2024-03-01T14:45:08Z2023-12-12Silva, Luiz Gustavo. RIS Development and Implementation in a mm-waves 5G NR System Towards 6G. 2023. [206]. Tese( Mestrado em Engenharia de Telecomunica????es) - Instituto Nacional de Telecomunica????es, [Santa Rita Do Sapuca??] .https://tede.inatel.br:8080/tede/handle/tede/247This work presents the conception and development of a novel 1024-element reconfigurable intelligent surface (RIS), using split-ring resonator (SRR) based 2-bit unit cells and tuned by varactor diodes in the millimeter waves (mm-waves) frequency band at 24.5 GHz with 400 MHz bandwidth. The RIS printed unit cell has been conceived using the full-wave electromagnetic solver ANSYS HFSS, comprising four layers based on two different substrates from Rogers, namely: 0.508-mm thick RO3003 and 0.1-mm thick bonding RO4450. The entire unit cell element encompasses four conducting layers, in which the first two ones form the SRR, whereas RF chokes are printed at the middle layer to isolate the DC circuit and the bias lines are routed at the fourth layer, resulting in a 0.245x0.245 ?? 2 total area. The 2-bit unit cell measured resonance frequency ranges from 22.4 to 25.52 GHz, resulting in a phase shifting greater than 270?? at 24.5 GHz. The proposed 2-bit RIS design uses the finite array domain decomposition method (FADDM) and radar cross-section (RCS) approachesin ANSYS HFSS. Beam steering generation from -60?? to 60?? in the azimuth plane is achieved by the 1024 elements arranged in a 32x32 matrix with a linear gradient phase controlled columnwise. The proposed RIS is characterized by reflection pattern performance under different incident wave angle conditions and beam steering angles. Reflection patterns from 30?? to 60?? are experimentally demonstrated with a scan loss of 4.1 dB. Additionally, a low-power consumption RIS control board is proposed and fabricated using a standard microcontroller, single-pole four-throw (SP4T) switches, digital-to-analog converters (DAC) and I/O expanders, resulting in an average power consumption of only 331 mW. Using the same transversal dimensions for the RIS and control board gives rise to a compact solution with 103x120x14 mm3 total area. Finally, a demonstrator is presented using the proposed mm-waves RIS in an indoor environment using a real 5G New Radio (NR) signal and following the 3 rd Generation Partnership Project (3GPP) Release 18 performance requirements. Such experiment uses a 64-quadrature amplitude modulation (QAM) 5G-NR signal at 24.5 GHz with a bandwidth of up to 400 MHz, achieving a maximum throughput of 1.2 Gbps. The RIS deployment results in a channel power and signal-to-noise ratio (SNR) improvement of 21.5 and 23.8 dB, respectively.Este trabalho apresenta a concep????o e desenvolvimento de uma nova superf??cie inteligente reconfigur??vel (RIS) de 1024 elementos utilizando c??lulas unit??rias de 2 bits. Estas s??o baseadas em ressonadores de anel dividido (SRR) sintonizados por diodos varactor na banda de ondas milim??tricas (mm-waves) e frequ??ncia de 24,5 GHz com largura de banda de 400 MHz. A c??lula unit??ria impressa RIS ?? concebida utilizando o software eletromagn??tico de onda completa ANSYS HFSS, compreendendo quatro camadas baseadas em dois substratos diferentes da Rogers, sendo estes o RO3003 de 0,508 mm de espessura e RO4450 de 0,1 mm de espessura como bonding. Todo o elemento de c??lula unit??ria abrange quatro camadas condutoras, nas quais as duas primeiras formam o SRR, enquanto os RF choke s??o impressos na camada intermedi??ria para isolar o circuito DC e as linhas de polariza????o roteadas na quarta camada, resultando em uma ??rea total de 0,245x0,245 ?? 2 . A frequ??ncia de resson??ncia medida na c??lula unit??ria varia de 22,4 a 25,52 GHz, resultando em um deslocamento de fase superior a 270?? em 24,5 GHz. O projeto proposto da RIS de 2 bits usa para solu????o o m??todo de decomposi????o de dom??nio de matriz finita (FADDM) e an??lises de se????o transversal de radar (RCS) no ANSYS HFSS. A gera????o do guiamento de feixe de -60?? a 60?? no plano de azimute ?? obtida pelos 1024 elementos dispostos em uma matriz 32x32 com gradiente de fase linear controlado em colunas. O RIS proposto ?? caracterizado pelo desempenho do diagrama de reflex??o sob diferentes condi????es de ??ngulo de onda incidente e ??ngulos de guiamento do feixe. Diagramas de reflex??o de 30?? a 60?? s??o demonstrados experimentalmente com uma perda de varredura de 4,1 dB. Al??m disso, tem-se a proposta e fabrica????o da placa de controle da RIS com baixo consumo de energia usando um microcontrolador, chaves single-pole four-throw (SP4T), conversores digital para anal??gico (DAC) e expansores de I/O, resultando em um consumo m??dio de energia de apenas 331 mW. A utiliza????o das mesmas dimens??es transversais entre a RIS e sua placa de controle resulta em uma solu????o compacta com ??rea total de 103x120x14 mm3 . Por fim, ?? apresentado uma demonstra????o usando a RIS de ondas milim??tricas proposta em um ambiente interno operando com um sinal 5G New Radio (NR) real e seguindo os requisitos de desempenho do 3rd Generation Partnership Project (3GPP) Release 18. Tal experimento usa um sinal 5G NR de modula????o em fase e amplitude 64-QAM em 24,5 GHz com largura de banda de at?? 400 MHz, atingindo uma taxa de vaz??o m??xima de 1,2 Gbps. A utiliza????o da RIS resulta em uma melhoria na pot??ncia do canal e na rela????o sinal-ru??do (SNR) de 21,5 e 23,8 dB, respectivamente. Esses n??meros representam uma melhora significativa da magnitude do vetor de erro quadr??tico m??dio medido (EVMRMS) de 92,23 para 6,12%, o que ressalta o impacto da fun????o de direcionamento de feixe da RIS. O dispositivo proposto pode ser aplicado para extens??o de cobertura nas redes atuais 5G vislumbrando aplica????es futuras 6G, apresentando as vantagens de dimensional compacto e baixo consumo de pot??ncia. Palavras-chave: 5G NR, 6G, B5G, direcionamento de feixe, metamaterial, metasuperf??cie, ondas milim??tricas e RISSubmitted by Tede Dspace (tede@inatel.br) on 2024-03-01T14:44:43Z No. of bitstreams: 2 Luis Gustavo da Silva.pdf: 11165096 bytes, checksum: 15bd5fea4a15881521ff33b0f94e6dba (MD5) Autoriza????o Luis Gustavo.pdf: 1289826 bytes, checksum: 15e1450f8424c7d75da94983c6f4fcc6 (MD5)Made available in DSpace on 2024-03-01T14:45:08Z (GMT). No. of bitstreams: 2 Luis Gustavo da Silva.pdf: 11165096 bytes, checksum: 15bd5fea4a15881521ff33b0f94e6dba (MD5) Autoriza????o Luis Gustavo.pdf: 1289826 bytes, checksum: 15e1450f8424c7d75da94983c6f4fcc6 (MD5) Previous issue date: 2023-12-12application/pdfhttp://tede.inatel.br:8080/jspui/retrieve/1964/Luis%20Gustavo%20da%20Silva.pdf.jpghttp://tede.inatel.br:8080/jspui/retrieve/1966/Autoriza%c3%a7%c3%a3o%20Luis%20Gustavo.pdf.jpgengInstituto Nacional de Telecomunica????esMestrado em Engenharia de Telecomunica????esINATELBrasilInstituto Nacional de Telecomunica????es5G NR; 6G; B5G; beam steering; millimeter waves; metamaterial; metasurface and RISEngenharia - Telecomunica????esRIS Development and Implementation in a mm-waves 5G NR System Towards 6Ginfo:eu-repo/semantics/publishedVersioninfo:eu-repo/semantics/doctoralThesisinfo:eu-repo/semantics/openAccessreponame:Biblioteca Digital de Teses e Dissertações da INATELinstname:Instituto Nacional de Telecomunicações (INATEL)instacron:INATELLICENSElicense.txtlicense.txttext/plain; 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| dc.title.por.fl_str_mv |
RIS Development and Implementation in a mm-waves 5G NR System Towards 6G |
| title |
RIS Development and Implementation in a mm-waves 5G NR System Towards 6G |
| spellingShingle |
RIS Development and Implementation in a mm-waves 5G NR System Towards 6G Silva, Luiz Gustavo 5G NR; 6G; B5G; beam steering; millimeter waves; metamaterial; metasurface and RIS Engenharia - Telecomunica????es |
| title_short |
RIS Development and Implementation in a mm-waves 5G NR System Towards 6G |
| title_full |
RIS Development and Implementation in a mm-waves 5G NR System Towards 6G |
| title_fullStr |
RIS Development and Implementation in a mm-waves 5G NR System Towards 6G |
| title_full_unstemmed |
RIS Development and Implementation in a mm-waves 5G NR System Towards 6G |
| title_sort |
RIS Development and Implementation in a mm-waves 5G NR System Towards 6G |
| author |
Silva, Luiz Gustavo |
| author_facet |
Silva, Luiz Gustavo |
| author_role |
author |
| dc.contributor.advisor1.fl_str_mv |
J??nior, Arismar Cerqueira |
| 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 |
| 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 |
Xiao, Pei |
| dc.contributor.referee3.fl_str_mv |
Mittra, Raj |
| dc.contributor.referee4.fl_str_mv |
Ribeiro, Jos?? Ant??nio |
| dc.contributor.referee4ID.fl_str_mv |
012.620.256-72 |
| dc.contributor.referee4Lattes.fl_str_mv |
http://lattes.cnpq.br/9987344139958522 |
| dc.contributor.authorID.fl_str_mv |
6383736364343966 |
| dc.contributor.authorLattes.fl_str_mv |
http://lattes.cnpq.br/6383736364343966 |
| dc.contributor.author.fl_str_mv |
Silva, Luiz Gustavo |
| contributor_str_mv |
J??nior, Arismar Cerqueira J??nior, Arismar Cerqueira Xiao, Pei Mittra, Raj Ribeiro, Jos?? Ant??nio |
| dc.subject.eng.fl_str_mv |
5G NR; 6G; B5G; beam steering; millimeter waves; metamaterial; metasurface and RIS |
| topic |
5G NR; 6G; B5G; beam steering; millimeter waves; metamaterial; metasurface and RIS Engenharia - Telecomunica????es |
| dc.subject.cnpq.fl_str_mv |
Engenharia - Telecomunica????es |
| description |
This work presents the conception and development of a novel 1024-element reconfigurable intelligent surface (RIS), using split-ring resonator (SRR) based 2-bit unit cells and tuned by varactor diodes in the millimeter waves (mm-waves) frequency band at 24.5 GHz with 400 MHz bandwidth. The RIS printed unit cell has been conceived using the full-wave electromagnetic solver ANSYS HFSS, comprising four layers based on two different substrates from Rogers, namely: 0.508-mm thick RO3003 and 0.1-mm thick bonding RO4450. The entire unit cell element encompasses four conducting layers, in which the first two ones form the SRR, whereas RF chokes are printed at the middle layer to isolate the DC circuit and the bias lines are routed at the fourth layer, resulting in a 0.245x0.245 ?? 2 total area. The 2-bit unit cell measured resonance frequency ranges from 22.4 to 25.52 GHz, resulting in a phase shifting greater than 270?? at 24.5 GHz. The proposed 2-bit RIS design uses the finite array domain decomposition method (FADDM) and radar cross-section (RCS) approachesin ANSYS HFSS. Beam steering generation from -60?? to 60?? in the azimuth plane is achieved by the 1024 elements arranged in a 32x32 matrix with a linear gradient phase controlled columnwise. The proposed RIS is characterized by reflection pattern performance under different incident wave angle conditions and beam steering angles. Reflection patterns from 30?? to 60?? are experimentally demonstrated with a scan loss of 4.1 dB. Additionally, a low-power consumption RIS control board is proposed and fabricated using a standard microcontroller, single-pole four-throw (SP4T) switches, digital-to-analog converters (DAC) and I/O expanders, resulting in an average power consumption of only 331 mW. Using the same transversal dimensions for the RIS and control board gives rise to a compact solution with 103x120x14 mm3 total area. Finally, a demonstrator is presented using the proposed mm-waves RIS in an indoor environment using a real 5G New Radio (NR) signal and following the 3 rd Generation Partnership Project (3GPP) Release 18 performance requirements. Such experiment uses a 64-quadrature amplitude modulation (QAM) 5G-NR signal at 24.5 GHz with a bandwidth of up to 400 MHz, achieving a maximum throughput of 1.2 Gbps. The RIS deployment results in a channel power and signal-to-noise ratio (SNR) improvement of 21.5 and 23.8 dB, respectively. |
| publishDate |
2023 |
| dc.date.issued.fl_str_mv |
2023-12-12 |
| dc.date.accessioned.fl_str_mv |
2024-03-01T14:45:08Z |
| dc.type.status.fl_str_mv |
info:eu-repo/semantics/publishedVersion |
| dc.type.driver.fl_str_mv |
info:eu-repo/semantics/doctoralThesis |
| format |
doctoralThesis |
| status_str |
publishedVersion |
| dc.identifier.citation.fl_str_mv |
Silva, Luiz Gustavo. RIS Development and Implementation in a mm-waves 5G NR System Towards 6G. 2023. [206]. Tese( Mestrado em Engenharia de Telecomunica????es) - Instituto Nacional de Telecomunica????es, [Santa Rita Do Sapuca??] . |
| dc.identifier.uri.fl_str_mv |
https://tede.inatel.br:8080/tede/handle/tede/247 |
| identifier_str_mv |
Silva, Luiz Gustavo. RIS Development and Implementation in a mm-waves 5G NR System Towards 6G. 2023. [206]. Tese( Mestrado em Engenharia de Telecomunica????es) - Instituto Nacional de Telecomunica????es, [Santa Rita Do Sapuca??] . |
| url |
https://tede.inatel.br:8080/tede/handle/tede/247 |
| dc.language.iso.fl_str_mv |
eng |
| language |
eng |
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Instituto Nacional de Telecomunica????es |
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Mestrado em Engenharia de Telecomunica????es |
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INATEL |
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Brasil |
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Instituto Nacional de Telecomunica????es |
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Instituto Nacional de Telecomunica????es |
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INATEL |
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Biblioteca Digital de Teses e Dissertações da INATEL |
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