World's Best Scientists 2026 revealed!

D-Index & Metrics

Electronics and Electrical Engineering

D-Index
43
Citations
7394
World Ranking
3906
National Ranking
14

Overview

Anding Zhu is affiliated with University College Dublin in Ireland, contributing extensively to the field of engineering with a focus on electrical and electronic engineering. Their research engages deeply with radio frequency integrated circuit design and advanced power amplifier design.

The scientist's work covers a range of topics including:

  • Radio Frequency Integrated Circuit Design
  • Advanced Power Amplifier Design
  • GaN-based semiconductor devices and materials
  • Full-Duplex Wireless Communications
  • Microwave Engineering and Waveguides
  • Antenna Design and Analysis
  • Millimeter-Wave Propagation and Modeling

Zhu has published significantly in electrical engineering subfields, notably electrical and electronic engineering, with additional involvement in condensed matter physics, aerospace engineering, civil and structural engineering, and automotive engineering.

Frequent collaborators include Robert Bogdan Staszewski, Jingzhou Pang, Yue Li, Xiaoyu Wang, and Chenhao Chu, indicating sustained partnerships across multiple projects and publications.

The scientist's publishing record shows a strong presence in leading academic journals and conferences. The most frequent publication venues are:

  • IEEE Transactions on Microwave Theory and Techniques
  • IEEE Microwave Magazine
  • IEEE Journal of Solid-State Circuits
  • IEEE Transactions on Circuits and Systems I Regular Papers
  • IEEE Microwave and Wireless Technology Letters

Some of Zhu's recent papers include:

  • "Analysis and Design of Highly Efficient Wideband RF-Input Sequential Load Modulated Balanced Power Amplifier," 2020, IEEE Transactions on Microwave Theory and Techniques
  • "Breaking the Bandwidth Limit: A Review of Broadband Doherty Power Amplifier Design for 5G," 2020, IEEE Microwave Magazine
  • "Broadband RF-Input Continuous-Mode Load-Modulated Balanced Power Amplifier With Input Phase Adjustment," 2020, IEEE Transactions on Microwave Theory and Techniques
  • "Compact SIW Fed Dual-Port Single Element Annular Slot MIMO Antenna for 5G mmWave Applications," 2021, IEEE Access
  • "Bandwidth Enhancement of Doherty Power Amplifier Using Modified Load Modulation Network," 2020, IEEE Transactions on Circuits and Systems I Regular Papers

Best Publications

  • Dynamic Deviation Reduction-Based Volterra Behavioral Modeling of RF Power Amplifiers

    A. Zhu;J.C. Pedro;T.J. Brazil

  • Open-Loop Digital Predistorter for RF Power Amplifiers Using Dynamic Deviation Reduction-Based Volterra Series

    Anding Zhu;P.J. Draxler;J.J. Yan;T.J. Brazil

  • Band-Limited Volterra Series-Based Digital Predistortion for Wideband RF Power Amplifiers

    Chao Yu;Lei Guan;Erni Zhu;Anding Zhu

  • A Simplified Broadband Design Methodology for Linearized High-Efficiency Continuous Class-F Power Amplifiers

    N. Tuffy;Lei Guan;A. Zhu;T. J. Brazil

  • Behavioral modeling of RF power amplifiers based on pruned volterra series

    A. Zhu;T.J. Brazil

  • Green Communications: Digital Predistortion for Wideband RF Power Amplifiers

    Lei Guan;Anding Zhu

  • Decomposed Vector Rotation-Based Behavioral Modeling for Digital Predistortion of RF Power Amplifiers

    Anding Zhu

  • Digital Predistortion for Envelope-Tracking Power Amplifiers Using Decomposed Piecewise Volterra Series

    Anding Zhu;P.J. Draxler;Chin Hsia;T.J. Brazil

  • Highly Efficient Broadband Continuous Inverse Class-F Power Amplifier Design Using Modified Elliptic Low-Pass Filtering Matching Network

    Mengsu Yang;Jing Xia;Yan Guo;Anding Zhu

  • A Broadband High-Efficiency Doherty Power Amplifier With Integrated Compensating Reactance

    Jing Xia;Mengsu Yang;Yan Guo;Anding Zhu

  • Pruning the Volterra Series for Behavioral Modeling of Power Amplifiers Using Physical Knowledge

    A. Zhu;J.C. Pedro;T.R. Cunha

  • An efficient Volterra-based behavioral model for wideband RF power amplifiers

    A. Zhu;M. Wren;T.J. Brazil

  • Analysis and Design of Highly Efficient Wideband RF-Input Sequential Load Modulated Balanced Power Amplifier

    Jingzhou Pang;Yue Li;Meng Li;Yikang Zhang

  • Optimized Low-Complexity Implementation of Least Squares Based Model Extraction for Digital Predistortion of RF Power Amplifiers

    Lei Guan;Anding Zhu

  • Low-Cost FPGA Implementation of Volterra Series-Based Digital Predistorter for RF Power Amplifiers

    Lei Guan;Anding Zhu

  • An adaptive Volterra predistorter for the linearization of RF high power amplifiers

    Anding Zhu;T.J. Brazil

  • Simplified dynamic deviation reduction-based Volterra model for Doherty power amplifiers

    Lei Guan;Anding Zhu

  • Breaking Bandwidth Limit: A Review of Broadband Doherty Power Amplifier Design for 5G

    Gholamreza Nikandish;Robert Bogdan Staszewski;Anding Zhu

  • Full-Angle Digital Predistortion of 5G Millimeter-Wave Massive MIMO Transmitters

    Chao Yu;Jianxin Jing;Han Shao;Zhi Hao Jiang

  • Broadband RF-Input Continuous-Mode Load-Modulated Balanced Power Amplifier With Input Phase Adjustment

    Jingzhou Pang;Chenhao Chu;Yue Li;Anding Zhu

  • Digitally Assisted Dual-Switch High-Efficiency Envelope Amplifier for Envelope-Tracking Base-Station Power Amplifiers

    Chin Hsia;Anding Zhu;J. J. Yan;P. Draxler

  • Class-J RF power amplifier with wideband harmonic suppression

    Neal Tuffy;Anding Zhu;Thomas J. Brazil

Frequent Co-Authors

Robert Bogdan Staszewski
Robert Bogdan Staszewski University College Dublin
Wei Hong
Wei Hong Southeast University
Christian Fager
Christian Fager Chalmers University of Technology
Peter M. Asbeck
Peter M. Asbeck University of California, San Diego
Paolo Colantonio
Paolo Colantonio University of Rome Tor Vergata
Mikko Valkama
Mikko Valkama Tampere University
Lauri Anttila
Lauri Anttila Tampere University
Mohammad S. Sharawi
Mohammad S. Sharawi Polytechnique Montréal
Guo Qing Luo
Guo Qing Luo Hangzhou Dianzi University

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