[PDF] Composite Vortex Manipulation as a Design Tool for Reflective Intelligent Surfaces | Semantic Scholar (2024)

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@article{Barbuto2023CompositeVM, title={Composite Vortex Manipulation as a Design Tool for Reflective Intelligent Surfaces}, author={Mirko Barbuto and Andrea Al{\'u} and Filiberto Bilotti and Alessandro Toscano}, journal={IEEE Antennas and Wireless Propagation Letters}, year={2023}, volume={22}, pages={2392-2396}, url={https://api.semanticscholar.org/CorpusID:259684891}}
  • M. Barbuto, A. Alú, A. Toscano
  • Published in IEEE Antennas and Wireless… 1 October 2023
  • Engineering, Physics

This framework proposes a new design strategy for adding reconfigurability to reflective metasurfaces (MTSs) and, thus, implementing RISs and exploits the insights of CV theory to control the overall scattering pattern of reflective MTSs and reduce the complexity of the control system.

5 Citations

Background Citations

2

Methods Citations

1

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5 Citations

Microwave Applications of Vortex and Composite Vortex Patterns
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    2023 Seventeenth International Congress on…

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Vortex and composite vortex patterns can occur in a wide variety of physical systems, including plasmas, fluids, and electromagnetic waves. In addition to their spontaneous formation, several

Synthesis of Shaped Fields through Composite Vortices
    M. BarbutoM. Longhi A. Alù

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    2023 IEEE Conference on Antenna Measurements and…

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In this contribution, we discuss the shaping of radiated/reflected electromagnetic fields through the synthesis of composite vortices. The proposed approach is based on controlling the phase and

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    Á. F. VaqueroE. Martinez‐de‐RiojaM. ArrebolaJ. EncinarMaha Achour

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    IEEE Transactions on Antennas and Propagation

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This work proposes a smart electromagnetic skin (SES) to enhance mm-wave fifth generation (5G) communications in indoor scenarios. The SES is based on a passive panel of reflective elements that not

Reflective Intelligent Surfaces: Reducing Complexity by Controlling the Illuminating Field
    M. BarbutoZ. Hamzavi-Zarghani A. Toscano

    Engineering, Physics

    2024 18th European Conference on Antennas and…

  • 2024

Reflective Intelligent Surfaces (RIS) could play a pivotal role in the implementation of a smart electromagnetic environment. However, achieving efficient and simple reconfigurability of RIS and

Molding of Reflection and Scattering From Uniform Walls Using Space-Periodic Metasurfaces
    S. KosulnikovF. CuestaX. WangFellow Ieee S.A. Tretyakov

    Engineering, Physics

    IEEE Transactions on Antennas and Propagation

  • 2024

Active development is taking place in reconfigurable and static metasurfaces that control and optimize reflections. However, existing designs typically only optimize reflections from the metasurface

31 References

Designing Reflective Intelligent Surfaces through the Composite Vortex Theory
    M. BarbutoA. AlúF. BilottiA. Toscano

    Engineering, Physics

    2022 Sixteenth International Congress on…

  • 2022

In this contribution, we explore the possibility of tailoring the response of a reflective metasurface (MTS) according to the composite vortex theory, i.e. the judicious superposition of different

  • 3
Moiré metasurfaces for dynamic beamforming
    Shuo LiuShaojie Ma T. Cui

    Engineering, Physics

    Science advances

  • 2022

Recent advances in digitally programmable metamaterials have accelerated the development of reconfigurable intelligent surfaces (RIS). However, the excessive use of active components (e.g., pin

  • 22
  • PDF
On the Integration of Reconfigurable Intelligent Surfaces in Real-World Environments: A Convenient Approach for Estimation Reflection and Transmission
    A. Díaz-RubioS. KosulnikovS. Tretyakov

    Engineering, Physics

    IEEE Antennas and Propagation Magazine

  • 2022

This article combines physical optics approximation and the theory of diffraction gratings to study the scattering properties of finite-size metasurfaces mounted on partially reflecting walls.

  • 22
  • PDF
Reconfigurable Intelligent Surfaces: Simplified-Architecture Transmitters—From Theory to Implementations
    Q. ChengLei Zhang T. Cui

    Engineering, Physics

    Proceedings of the IEEE

  • 2022

An overview of the theoretical models of the space–time digital metasurface and information metAsurface, the mechanisms of wavefront shaping, and the signal modulations in space and time domains during the wave–matter interactions are provided.

  • 34
Metasurfaces 3.0: a New Paradigm for Enabling Smart Electromagnetic Environments
    M. BarbutoZ. Hamzavi-Zarghani F. Bilotti

    Engineering, Physics

    IEEE Transactions on Antennas and Propagation

  • 2021

The aim of this paper is to review some recent applications of metasurfaces and cast them in the scenario of next-generation wireless systems, and show their potentialities in overcoming some detrimental effects presented by the environment in wireless communications.

Reconfigurable Intelligent Surfaces: Principles and Opportunities
    Yuanwei LiuXiao Liu N. Al-Dhahir

    Engineering, Computer Science

  • 2021

A comprehensive overview of the state-of-the-art on RISs, with focus on their operating principles, performance evaluation, beamforming design and resource management, applications of machine learning to RIS-enhanced wireless networks, as well as the integration of RISs with other emerging technologies.

Communication Models for Reconfigurable Intelligent Surfaces: From Surface Electromagnetics to Wireless Networks Optimization
    M. Di RenzoF. DanufaneS. Tretyakov

    Engineering, Physics

    Proceedings of the IEEE

  • 2022

This tutorial article focuses on models for RISs that are based on inhom*ogeneous sheets of surface impedance and offers a step-by-step tutorial on formulating electromagnetically consistent analytical models for optimizing the surface impedance.

A Topological Design Tool for the Synthesis of Antenna Radiation Patterns
    M. BarbutoM. MiriA. AlúF. BilottiA. Toscano

    Engineering, Physics

    IEEE Transactions on Antennas and Propagation

  • 2020

Patch antennas are among the most popular radiating elements, yet their quasi-2-D structure reduces the degrees of freedom available to tailor their radiation pattern. To overcome this limitation, a

A Reconfigurable Graphene Reflectarray for Generation of Vortex THz Waves
    Zhuang ChangBen YouLinsheng WuM. TangYao-ping ZhangJ. Mao

    Physics, Engineering

    IEEE Antennas and Wireless Propagation Letters

  • 2016

A reconfigurable graphene reflectarray is proposed for the generation of vortex radio waves at THz. First, a simple sectored circular reflective surface model with a plane wave at normal incidence is

  • 75
Building a Smart EM Environment - AI-Enhanced Aperiodic Micro-Scale Design of Passive EM Skins
    G. OliveriF. ZardiP. RoccaM. SalucciA. Massa

    Engineering, Physics

    IEEE Transactions on Antennas and Propagation

  • 2022

An enhanced artificial intelligence (IA)-based digital twin (DT) is built to efficiently and reliably predict the relationships among the UCs and the nonuniform coupling effects arising when theUCs are irregularly assembled to build the corresponding SPSS.

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