World's Best Scientists 2026 revealed!

D-Index & Metrics

Electronics and Electrical Engineering

D-Index
38
Citations
4609
World Ranking
4988
National Ranking
734

Overview

RongLin Li is affiliated with the South China University of Technology in China and has contributed extensively to the field of engineering, particularly in aerospace engineering and electrical and electronic engineering. Their research encompasses a broad array of topics within antenna design and microwave engineering.

The scientist's main fields of study include:

  • Engineering

With a significant focus on subfields, their work spans:

  • Aerospace Engineering
  • Electrical and Electronic Engineering
  • Pathology and Forensic Medicine
  • Cancer Research
  • Genetics

Li's main research topics cover:

  • Antenna Design and Analysis
  • Advanced Antenna and Metasurface Technologies
  • Microwave Engineering and Waveguides
  • Antenna Design and Optimization
  • Advanced MIMO Systems Optimization
  • Full-Duplex Wireless Communications
  • Metamaterials and Metasurfaces Applications

Frequent publication venues highlight the outlets where Li's work appears most, including:

  • 2022 IEEE Conference on Antenna Measurements and Applications (CAMA)
  • Microwave and Optical Technology Letters
  • IEEE Transactions on Antennas and Propagation
  • Annals of the Rheumatic Diseases
  • IEEE Access

Notable recent papers authored or coauthored by RongLin Li include:

  • "Aperture-Shared Dual-Band Antennas With Partially Reflecting Surfaces for Base-Station Applications" (2021), IEEE Transactions on Antennas and Propagation
  • "A Triband SIW Cavity-Backed Differentially Fed Dual-Polarized Slot Antenna for WiFi/5G Applications" (2020), IEEE Transactions on Antennas and Propagation
  • "Embeddable Structure for Reducing Mutual Coupling in Massive MIMO Antennas" (2020), IEEE Access
  • "Design of a Novel Selenium-Containing Spiro Donor for Narrowband Blue Thermally Activated Delayed Fluorescence Emitters in OLEDs" (2024), Advanced Optical Materials
  • "An Aperture-Shared Dual-Band Antenna Array Based on Upstanding Dipoles" (2023), IEEE Antennas and Wireless Propagation Letters

Li frequently collaborates with several researchers, including:

  • Yuehui Cui
  • Zhenxing Tu
  • Yue Qin
  • S.X. Zhang
  • Quan Xue

Best Publications

  • A Broadband Dual-Polarized Planar Antenna for 2G/3G/LTE Base Stations

    YueHui Cui;RongLin Li;HuanZhan Fu

  • Equivalent-Circuit Analysis of a Broadband Printed Dipole With Adjusted Integrated Balun and an Array for Base Station Applications

    Rong Lin Li;T. Wu;Bo Pan;Kyutae Lim

  • Analysis and Design of a Compact Dual-Band Directional Antenna

    XuLin Quan;RongLin Li;YueHui Cui;M. M. Tentzeris

  • A Novel Broadband Planar Antenna for 2G/3G/LTE Base Stations

    YueHui Cui;RongLin Li;Peng Wang

  • A Broadband Dual-Polarized Omnidirectional Antenna for Base Stations

    XuLin Quan;RongLin Li

  • A Dual-Broadband MIMO Antenna System for GSM/UMTS/LTE and WLAN Handsets

    Xiang Zhou;XuLin Quan;RongLin Li

  • Novel Dual-Broadband Planar Antenna and Its Array for 2G/3G/LTE Base Stations

    YueHui Cui;RongLin Li;Peng Wang

  • Investigation of circularly polarized loop antennas with a parasitic element for bandwidth enhancement

    RongLin Li;G. DeJean;J. Laskar;M.M. Tentzeris

  • 3-D-integrated RF and millimeter-wave functions and modules using liquid crystal polymer (LCP) system-on-package technology

    M.M. Tentzeris;J. Laskar;J. Papapolymerou;S. Pinel

  • Radiation-pattern improvement of patch antennas on a large-size substrate using a compact soft-surface structure and its realization on LTCC multilayer technology

    RongLin Li;G. DeJean;M.M. Tentzeris;J. Papapolymerou

  • A Broadband Dual-Polarized Dual-OAM-Mode Antenna Array for OAM Communication

    Baiyang Liu;Yuehui Cui;Ronglin Li

  • A Novel Dual-Band MIMO Antenna Array With Low Mutual Coupling for Portable Wireless Devices

    XueMing Ling;RongLin Li

  • Design of compact stacked-patch antennas in LTCC multilayer packaging modules for wireless applications

    RongLin Li;G. DeJean;Moonkyun Maeng;Kyutae Lim

  • A Shared-Aperture Dual-Band Planar Array With Self-Similar Printed Folded Dipoles

    Krishna Naishadham;RongLin Li;Li Yang;Terrence Wu

  • A Novel Multiband Planar Antenna for GSM/UMTS/LTE/Zigbee/RFID Mobile Devices

    Ting Zhang;RongLin Li;GuiPing Jin;Gang Wei

  • A Broadband Omnidirectional Circularly Polarized Antenna

    XuLin Quan;RongLin Li;Manos M. Tentzeris

  • Development and analysis of a folded shorted-patch antenna with reduced size

    RongLin Li;G. DeJean;M.M. Tentzeris;J. Laskar

  • A Compact Broadband Planar Antenna for GPS, DCS-1800, IMT-2000, and WLAN Applications

    RongLin Li;Bo Pan;Joy Laskar;Manos M. Tentzeris

  • A Novel Low-Profile Broadband Dual-Frequency Planar Antenna for Wireless Handsets

    RongLin Li;Bo Pan;J. Laskar;M.M. Tentzeris

  • Circularly polarized open-loop antenna

    Rong-Lin Li;V.F. Fusco;H. Nakano

  • Bandwidth Enhancement of a Broadband Dual-Polarized Antenna for 2G/3G/4G and IMT Base Stations

    Yuehui Cui;Linjuan Wu;Ronglin Li

  • DEVELOPMENT OF A BROADBAND HORIZONTALLY POLARIZED OMNIDIRECTIONAL PLANAR ANTENNA AND ITS ARRAY FOR BASE STATIONS

    Xu Lin Quan;RongLin Li;Jian Ye Wang;Yue Hui Cui

  • Optically controlled reconfigurable antenna for cognitive radio applications

    G.P. Jin;D.L. Zhang;R.L. Li

  • A Broadband Dual-Polarized Omnidirectional Antenna Based on Orthogonal Dipoles

    Yi Fan;Xiongying Liu;Baiyang Liu;RongLin Li

  • Circularly polarized loop antennas with a parasitic element for bandwidth enhancement

    G. DeJean;R.L. Li;J. Laskar;M.M. Tentzeris

Frequent Co-Authors

Manos M. Tentzeris
Manos M. Tentzeris Georgia Institute of Technology
J. Laskar
J. Laskar Maja Systems
John Papapolymerou
John Papapolymerou Michigan State University
Qing-Xin Chu
Qing-Xin Chu South China University of Technology
Yang Hao
Yang Hao Queen Mary University of London
Vincent Fusco
Vincent Fusco Queen's University Belfast
Jong-Gwan Yook
Jong-Gwan Yook Yonsei University

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