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Wideband Pixel-Based Fluid Antenna System: An Antenna Design for Smart City

  • Baiyang Liu (Co-first Author)
  • , Tuo Wu (Co-first Author)
  • , Kai-Kit Wong
  • , Hang Wong
  • , Kin-Fai Tong*
  • *Corresponding author for this work

Research output: Journal Publications and ReviewsRGC 21 - Publication in refereed journalpeer-review

Abstract

Smart cities demand versatile antenna systems supporting heterogeneous wireless applications across diverse propagation environments. This paper presents a wideband pixel-based fluid antenna system (PB-FAS) designed as a general-purpose antenna solution for smart city infrastructures, addressing fundamental challenges in wideband operation, spatial adaptability, interference mitigation, and scalable deployment. The proposed PB-FAS integrates parasitic elements for enhanced bandwidth (6.0-7.0 GHz) and a compact 6-PIN-diode pixel surface enabling 64 distinct fluid states, achieving optimal cost-performance balance. An integrated FPGA-based control system provides microsecond-level reconfiguration for real-Time channel adaptation. We establish a rigorous exact spatial geometry (ESG) channel model capturing state-dependent antenna responses across near-field and far-field regions, providing a unified theoretical foundation for interference mitigation analysis. Comprehensive validation through full-wave electromagnetic simulations, anechoic chamber measurements, and experimental two-source 16-QAM communication tests demonstrates up to 11 dB SINR improvement and 13.2% EVM reduction through hardware-level spatial diversity, confirming the system's effectiveness as a scalable, cost-effective solution for next-generation smart city wireless infrastructures ranging from IoT sensor networks to high-capacity backhaul links. © 2025 IEEE.
Original languageEnglish
Pages (from-to)6850-6862
JournalIEEE Internet of Things Journal
Volume13
Issue number4
Online published26 Nov 2025
DOIs
Publication statusPublished - 15 Feb 2026

Funding

This research work of K. F. Tong was funded by Hong Kong Metropolitan University, Staff Research Startup Fund: FRSF/2024/03. The work of T. Wu, H. Wong was funded by Hong Kong Research Grants Council under the Area of Excellence Scheme under Grant AoE/E-101/23-N. The work of K. K. Wong is supported by the Engineering and Physical Sciences Research Council (EPSRC) under grant EP/W026813/1.

UN SDGs

This output contributes to the following UN Sustainable Development Goals (SDGs)

  1. SDG 11 - Sustainable Cities and Communities
    SDG 11 Sustainable Cities and Communities

Research Keywords

  • fluid antenna system (FAS)
  • interference mitigation
  • IoT communication
  • pixel-based fluid antenna
  • Smart city
  • spatial diversity
  • wideband antenna

RGC Funding Information

  • RGC-funded

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  • AoE(UGC)-Sub-pj: Advanced Antenna Technology for a Smart World

    LU, J. (Principal Investigator / Project Coordinator)

    1/01/24 → …

    Project: Research

  • AoE(UGC): Advanced Antenna Technology for a Smart World

    LUK, K. M. (Principal Investigator / Project Coordinator), CHAN, C. H. (Co-Principal Investigator), GAO, S. (Co-Principal Investigator), LEUNG, K. W. (Co-Principal Investigator), LIN, W. (Co-Principal Investigator), LU, J. (Co-Principal Investigator), LUCYSZYN, S. (Co-Principal Investigator), Pang, S. (Co-Principal Investigator), TONG, K. F. K. (Co-Principal Investigator), WONG, H. (Co-Principal Investigator), WONG, M. H. A. (Co-Principal Investigator), ZHENG, S. (Co-Principal Investigator), LAU, V. K. N. (Co-Investigator), WANG, H. (Co-Investigator) & WONG, K.-K. (Co-Investigator)

    1/01/24 → …

    Project: Research

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