DMA-Aided MU-MISO Systems for Power Splitting SWIPT via Lorentzian-Constrained Holography

Fuente: arXiv
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Main Authors: Altinoklu, Askin, Musavian, Leila
Format: Preprint
Published: 2025
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author Altinoklu, Askin
Musavian, Leila
author_facet Altinoklu, Askin
Musavian, Leila
contents This paper presents an optimal power splitting and beamforming design for co-located simultaneous wireless information and power transfer (SWIPT) users in Dynamic Metasurface Antenna (DMA)-aided multiuser multiple-input single-output (MISO) systems. The objective is to minimize transmit power while meeting users signal-to-interference-plus-noise ratio (SINR) and energy harvesting (EH) requirements. The problem is solved via an alternating optimization framework based on semidefinite programming (SDP), where metasurface tunability follows Lorentzian-constrained holography (LCH). In contrast to traditional beamforming architectures, DMA-assisted architectures reduce the need for RF chains and phase shifters but require optimization under the Lorentzian constraint limiting the amplitude and phase optimizations. Hence, the proposed method integrates several LCH schemes, including the recently proposed adaptive-radius LCH (ARLCH), and evaluates nonlinear EH models and circuit noise effects. Simulation results show that the proposed design significantly reduces transmit power compared with baseline methods, highlighting the efficiency of ARLCH and optimal power splitting in DMA-assisted SWIPT systems.
format Preprint
id arxiv_https___arxiv_org_abs_2511_08125
institution arXiv
publishDate 2025
record_format arxiv
spellingShingle DMA-Aided MU-MISO Systems for Power Splitting SWIPT via Lorentzian-Constrained Holography
Altinoklu, Askin
Musavian, Leila
Signal Processing
Information Theory
This paper presents an optimal power splitting and beamforming design for co-located simultaneous wireless information and power transfer (SWIPT) users in Dynamic Metasurface Antenna (DMA)-aided multiuser multiple-input single-output (MISO) systems. The objective is to minimize transmit power while meeting users signal-to-interference-plus-noise ratio (SINR) and energy harvesting (EH) requirements. The problem is solved via an alternating optimization framework based on semidefinite programming (SDP), where metasurface tunability follows Lorentzian-constrained holography (LCH). In contrast to traditional beamforming architectures, DMA-assisted architectures reduce the need for RF chains and phase shifters but require optimization under the Lorentzian constraint limiting the amplitude and phase optimizations. Hence, the proposed method integrates several LCH schemes, including the recently proposed adaptive-radius LCH (ARLCH), and evaluates nonlinear EH models and circuit noise effects. Simulation results show that the proposed design significantly reduces transmit power compared with baseline methods, highlighting the efficiency of ARLCH and optimal power splitting in DMA-assisted SWIPT systems.
title DMA-Aided MU-MISO Systems for Power Splitting SWIPT via Lorentzian-Constrained Holography
topic Signal Processing
Information Theory
url https://arxiv.org/abs/2511.08125