Joint Beamforming Optimization for Simultaneously Transmitting And Reflecting (STAR) RIS Aided Communications : (Invited Paper)

A novel concept of simultaneously transmitting and reflecting (STAR) reconfigurable intelligent surfaces (RISs) is investigated, where the incident wireless signal is divided into transmitted and reflected signals passing into both sides of the space surrounding the surface, thus facilitating a full...

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Published inConference record - Asilomar Conference on Signals, Systems, & Computers pp. 709 - 714
Main Authors Mu, Xidong, Liu, Yuanwei, Xu, Jiaqi, Guo, Li, Lin, Jiaru
Format Conference Proceeding
LanguageEnglish
Published IEEE 31.10.2021
Subjects
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ISSN2576-2303
DOI10.1109/IEEECONF53345.2021.9723386

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Abstract A novel concept of simultaneously transmitting and reflecting (STAR) reconfigurable intelligent surfaces (RISs) is investigated, where the incident wireless signal is divided into transmitted and reflected signals passing into both sides of the space surrounding the surface, thus facilitating a full-space manipulation of signal propagation. Motivated by this unique feature, a STAR-RIS aided downlink communication system is considered, where a multi-antenna base station (BS) sends information to two users, i.e., one on each side of the STAR-RIS. A power consumption minimization problem for the joint optimization of the active beamforming at the BS and the passive transmission and reflection beamforming at the STAR-RIS is formulated, subject to communication rate constraints of the users. The resulting highly-coupled non-convex optimization problem is solved by an iterative algorithm, which exploits the penalty method and successive convex approximation. Finally, our numerical results reveal that the required power consumption is significantly reduced by employing the proposed STAR-RIS instead of conventional reflecting/transmiting-only RISs.
AbstractList A novel concept of simultaneously transmitting and reflecting (STAR) reconfigurable intelligent surfaces (RISs) is investigated, where the incident wireless signal is divided into transmitted and reflected signals passing into both sides of the space surrounding the surface, thus facilitating a full-space manipulation of signal propagation. Motivated by this unique feature, a STAR-RIS aided downlink communication system is considered, where a multi-antenna base station (BS) sends information to two users, i.e., one on each side of the STAR-RIS. A power consumption minimization problem for the joint optimization of the active beamforming at the BS and the passive transmission and reflection beamforming at the STAR-RIS is formulated, subject to communication rate constraints of the users. The resulting highly-coupled non-convex optimization problem is solved by an iterative algorithm, which exploits the penalty method and successive convex approximation. Finally, our numerical results reveal that the required power consumption is significantly reduced by employing the proposed STAR-RIS instead of conventional reflecting/transmiting-only RISs.
Author Guo, Li
Lin, Jiaru
Xu, Jiaqi
Mu, Xidong
Liu, Yuanwei
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  organization: Beijing University of Posts and Telecommunications,Key Lab of Universal Wireless Communications, Ministry of Education,Beijing,China
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Snippet A novel concept of simultaneously transmitting and reflecting (STAR) reconfigurable intelligent surfaces (RISs) is investigated, where the incident wireless...
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StartPage 709
SubjectTerms Array signal processing
Joint beamforming optimization
Minimization
Power demand
Quality of service
Reconfigurable intelligent surfaces
Reflection
simultaneous transmission and reflection
Wireless communication
Title Joint Beamforming Optimization for Simultaneously Transmitting And Reflecting (STAR) RIS Aided Communications : (Invited Paper)
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