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Understanding the Role of Phase and Position Design in Fluid Reconfigurable Intelligent Surfaces

  • Jose David Vega Sanchez
  • , Victor Hugo Garzon Pacheco*
  • , Nathaly Veronica Orozco Garzon
  • , Henry Ramiro Carvajal Mora
  • , F. Javier Lopez-Martinez
  • *Autor correspondiente de este trabajo
  • Universidad de las Americas - Ecuador
  • Universidad San Francisco de Quito
  • University of Granada

Producción científica: Contribución a una revistaArtículorevisión exhaustiva

Resumen

Fluid Reconfigurable Intelligent Surfaces (FRISs) are gaining momentum as an improved alternative over classical RIS. However, it remains unclear whether their performance gains can be entirely attributed to spatial flexibility, or instead to differences in equivalent aperture or phase design. In this work, we shed light onto this problem by benchmarking FRIS vs. RIS performances in two practical scenarios: conventional RIS (same number of active elements and same overall aperture) and compact RIS (same number of active elements, and smaller aperture with sub-λ inter-element spacing). Statistical analysis demonstrates that: 1) spatial position optimization in FRIS provides noticeable gains over conventional RIS in the absence of phase-shift (PS) design; 2) such benefits vanish when FRIS and conventional RIS employ optimal beamforming (BF) and PS design, making position optimization irrelevant; and 3) FRIS consistently outperforms compact RIS with optimized BF and PS design, owing to spatial correlation and smaller aperture.

Idioma originalInglés
Páginas (desde-hasta)1414-1425
Número de páginas12
PublicaciónIEEE Open Journal of the Communications Society
Volumen7
DOI
EstadoPublicada - 2026

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