Optimal Planning for Heterogeneous Smart Radio Environments
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arXiv
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| Main Authors: | , , , , , |
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| Format: | Preprint |
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2024
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| _version_ | 1866929603600187392 |
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| author | Ayoubi, Reza Aghazadeh Moro, Eugenio Mizmizi, Marouan Tagliaferri, Dario Filippini, Ilario Spagnolini, Umberto |
| author_facet | Ayoubi, Reza Aghazadeh Moro, Eugenio Mizmizi, Marouan Tagliaferri, Dario Filippini, Ilario Spagnolini, Umberto |
| contents | Smart Radio Environment (SRE) is a central paradigms in 6G and beyond, where integrating SRE components into the network planning process enables optimized performance for high-frequency Radio Access Network (RAN). This paper presents a comprehensive planning framework utilizing realistic urban scenarios and precise channel models to analyze diverse SRE components, including Reconfigurable Intelligent Surface (RIS), Network-Controlled Repeater (NCR), and advanced technologies like Simultaneous transmitting and reflecting RIS (STAR RIS) and trisectoral NCR (3SNCR). We propose two optimization methods, full coverage minimum cost (FCMC) and maximum budget-constrained coverage (MBCC), that address key cost and coverage objectives by considering both physical characteristics and scalable costs of each component, influenced by factors such as NCR amplification gain and RIS dimensions. Extensive numerical results demonstrate the significant impact of these models in enhancing network planning efficiency for high-density urban environments. |
| format | Preprint |
| id |
arxiv_https___arxiv_org_abs_2411_15629 |
| institution | arXiv |
| publishDate | 2024 |
| record_format | arxiv |
| spellingShingle | Optimal Planning for Heterogeneous Smart Radio Environments Ayoubi, Reza Aghazadeh Moro, Eugenio Mizmizi, Marouan Tagliaferri, Dario Filippini, Ilario Spagnolini, Umberto Networking and Internet Architecture Signal Processing Smart Radio Environment (SRE) is a central paradigms in 6G and beyond, where integrating SRE components into the network planning process enables optimized performance for high-frequency Radio Access Network (RAN). This paper presents a comprehensive planning framework utilizing realistic urban scenarios and precise channel models to analyze diverse SRE components, including Reconfigurable Intelligent Surface (RIS), Network-Controlled Repeater (NCR), and advanced technologies like Simultaneous transmitting and reflecting RIS (STAR RIS) and trisectoral NCR (3SNCR). We propose two optimization methods, full coverage minimum cost (FCMC) and maximum budget-constrained coverage (MBCC), that address key cost and coverage objectives by considering both physical characteristics and scalable costs of each component, influenced by factors such as NCR amplification gain and RIS dimensions. Extensive numerical results demonstrate the significant impact of these models in enhancing network planning efficiency for high-density urban environments. |
| title | Optimal Planning for Heterogeneous Smart Radio Environments |
| topic | Networking and Internet Architecture Signal Processing |
| url | https://arxiv.org/abs/2411.15629 |