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October 8, 20250 citationsOpen Access

Fluid Reconfigurable Intelligent Surfaces: Joint On-Off Selection and Beamforming with Discrete Phase Shifts

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HXHan XiaoXHXiaoyan HuKWKai‐Kit Wong

Key Points

  • FRIS achieves significant performance gains compared to conventional RIS methods, indicating its effectiveness in enhancing communication.
  • The iterative algorithm based on cross-entropy optimization efficiently solves the optimization problem of element selection and phase shifts.
  • A SU-SISO system setup is utilized, showcasing how fluid reconfigurability can adapt to varying channel conditions.
  • Simulation results support the approach, providing evidence of improved achievable rates in the FRIS model.

Abstract

This letter proposes a fluid reconfigurable intelligent surface (FRIS) paradigm, extending the conventional reconfigurable intelligent surface (RIS) technology to incorporate position reconfigurability of the elements. In our model, a `fluid' element is realized by a dense matrix of subelements over a given space and dynamically selecting specific elements for signal modulation based on channel conditions. Specifically, we consider a FRIS-assisted single-user single-input single-output (SU-SISO) system and formulate an optimization problem that can jointly optimize element selection and their discrete phase shifts to maximize the achievable rate. To address this problem efficiently, we propose an iterative algorithm based on the cross-entropy optimization (CEO) framework. Simulation results reveal that FRIS achieves significant performance gains over traditional RIS.

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Cite This Study

Xiao et al. (2025) studied this question.

synapsesocial.com/papers/68e62de1a8c0c6d45873fe29https://doi.org/10.48550/arxiv.2503.14601
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