Achievable Rate Optimization for Large Stacked Intelligent Metasurfaces Based on Statistical CSI

Fuente: arXiv
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Main Authors: Papazafeiropoulos, Anastasios, Kourtessis, Pandelis, Chatzinotas, Symeon, Kaklamani, Dimitra I., Venieris, Iakovos S.
Format: Preprint
Published: 2024
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author Papazafeiropoulos, Anastasios
Kourtessis, Pandelis
Chatzinotas, Symeon
Kaklamani, Dimitra I.
Venieris, Iakovos S.
author_facet Papazafeiropoulos, Anastasios
Kourtessis, Pandelis
Chatzinotas, Symeon
Kaklamani, Dimitra I.
Venieris, Iakovos S.
contents Stacked intelligent metasurface (SIM) is an emerging design that consists of multiple layers of metasurfaces. A SIM enables holographic multiple-input multiple-output (HMIMO) precoding in the wave domain, which results in the reduction of energy consumption and hardware cost. On the ground of multiuser beamforming, this letter focuses on the downlink achievable rate and its maximization. Contrary to previous works on multiuser SIM, we consider statistical channel state information (CSI) as opposed to instantaneous CSI to overcome challenges such as large overhead. Also, we examine the performance of large surfaces. We apply an alternating optimization (AO) algorithm regarding the phases of the SIM and the allocated transmit power. Simulations illustrate the performance of the considered large SIM-assisted design as well as the comparison between different CSI considerations.
format Preprint
id arxiv_https___arxiv_org_abs_2405_18920
institution arXiv
publishDate 2024
record_format arxiv
spellingShingle Achievable Rate Optimization for Large Stacked Intelligent Metasurfaces Based on Statistical CSI
Papazafeiropoulos, Anastasios
Kourtessis, Pandelis
Chatzinotas, Symeon
Kaklamani, Dimitra I.
Venieris, Iakovos S.
Information Theory
Signal Processing
Stacked intelligent metasurface (SIM) is an emerging design that consists of multiple layers of metasurfaces. A SIM enables holographic multiple-input multiple-output (HMIMO) precoding in the wave domain, which results in the reduction of energy consumption and hardware cost. On the ground of multiuser beamforming, this letter focuses on the downlink achievable rate and its maximization. Contrary to previous works on multiuser SIM, we consider statistical channel state information (CSI) as opposed to instantaneous CSI to overcome challenges such as large overhead. Also, we examine the performance of large surfaces. We apply an alternating optimization (AO) algorithm regarding the phases of the SIM and the allocated transmit power. Simulations illustrate the performance of the considered large SIM-assisted design as well as the comparison between different CSI considerations.
title Achievable Rate Optimization for Large Stacked Intelligent Metasurfaces Based on Statistical CSI
topic Information Theory
Signal Processing
url https://arxiv.org/abs/2405.18920