World's Best Scientists 2026 revealed!

D-Index & Metrics

Electronics and Electrical Engineering

D-Index
38
Citations
5873
World Ranking
4921
National Ranking
1712

Overview

Fei Lu is affiliated with Drexel University in the United States and works primarily within the field of engineering. Their research focuses extensively on electrical and electronic engineering alongside subfields such as mechanical engineering, automotive engineering, control and systems engineering, and materials chemistry.

The scientist has published widely in various reputable venues, reflecting a concentration on advanced power electronics and related technologies. Frequent publication venues include:

  • IEEE Transactions on Power Electronics
  • IEEE Journal of Emerging and Selected Topics in Industrial Electronics
  • IEEE Journal of Emerging and Selected Topics in Power Electronics
  • IEEE Transactions on Transportation Electrification
  • IEEE Transactions on Industrial Electronics

Fei Lu's research topics encompass several key areas:

  • Wireless Power Transfer Systems
  • Energy Harvesting in Wireless Networks
  • HVDC Systems and Fault Protection
  • Silicon Carbide Semiconductor Technologies
  • Advanced Battery Technologies Research
  • Innovative Energy Harvesting Technologies
  • Electrical Fault Detection and Protection

Notable recent papers by Fei Lu, indicating their research interests and collaborations, include:

  • Review, Analysis, and Design of Four Basic CPT Topologies and the Application of High-Order Compensation Networks, 2021, IEEE Transactions on Power Electronics
  • DC Circuit Breakers: A Technology Development Status Survey, 2021, IEEE Transactions on Smart Grid
  • Fault Current Bypass-Based LVDC Solid-State Circuit Breakers, 2021, IEEE Transactions on Power Electronics
  • Implementing Symmetrical Structure in MOV-RCD Snubber-Based DC Solid-State Circuit Breakers, 2021, IEEE Transactions on Power Electronics
  • Design and Implementation of High-Misalignment Tolerance WPT System for Underwater Vehicles Based on a Variable Inductor, 2023, IEEE Transactions on Power Electronics

Throughout their career, Fei Lu has frequently collaborated with other researchers, including:

  • Hua Zhang
  • Yao Wang
  • Shuyan Zhao
  • Reza Kheirollahi
  • Chong Zhu

Best Publications

  • A Double-Sided LCLC -Compensated Capacitive Power Transfer System for Electric Vehicle Charging

    Fei Lu;Hua Zhang;Heath Hofmann;Chris Mi

  • A Four-Plate Compact Capacitive Coupler Design and LCL -Compensated Topology for Capacitive Power Transfer in Electric Vehicle Charging Application

    Hua Zhang;Fei Lu;Heath Hofmann;Weiguo Liu

  • A Dynamic Charging System With Reduced Output Power Pulsation for Electric Vehicles

    Fei Lu;Hua Zhang;Heath Hofmann;Chunting Chris Mi

  • A Review on the Recent Development of Capacitive Wireless Power Transfer Technology

    Fei Lu;Hua Zhang;Chris Mi

  • An Inductive and Capacitive Combined Wireless Power Transfer System With LC -Compensated Topology

    Fei Lu;Hua Zhang;Heath Hofmann;Chunting Chris Mi

  • A Double-Sided LC-Compensation Circuit for Loosely Coupled Capacitive Power Transfer

    Fei Lu;Hua Zhang;Heath Hofmann;Chunting Chris Mi

  • A Two-Plate Capacitive Wireless Power Transfer System for Electric Vehicle Charging Applications

    Fei Lu;Hua Zhang;Chris Mi

  • Frequency Optimization of a Loosely Coupled Underwater Wireless Power Transfer System Considering Eddy Current Loss

    Zhengchao Yan;Yiming Zhang;Tianze Kan;Fei Lu

  • Six-Plate Capacitive Coupler to Reduce Electric Field Emission in Large Air-Gap Capacitive Power Transfer

    Hua Zhang;Fei Lu;Heath Hofmann;Weiguo Liu

  • A Switched-Coupling-Capacitor Equalizer for Series-Connected Battery Strings

    Yunlong Shang;Bing Xia;Fei Lu;Chenghui Zhang

  • A Dual-Coupled LCC-Compensated IPT System With a Compact Magnetic Coupler

    Fei Lu;Hua Zhang;Heath Hofmann;Wencong Su

  • Load-Independent Wireless Power Transfer System for Multiple Loads Over a Long Distance

    Chenwen Cheng;Fei Lu;Zhe Zhou;Weiguo Li

  • A CLLC-compensated high power and large air-gap capacitive power transfer system for electric vehicle charging applications

    Fei Lu;Hua Zhang;Heath Hofmann;Chris Mi

  • Integrated Coil Design for EV Wireless Charging Systems Using LCC Compensation Topology

    Tianze Kan;Fei Lu;Trong-Duy Nguyen;Patrick P. Mercier

  • A Load-Independent LCC-Compensated Wireless Power Transfer System for Multiple Loads With a Compact Coupler Design

    Chenwen Cheng;Fei Lu;Zhe Zhou;Weiguo Li

  • A Real-Time Battery Thermal Management Strategy for Connected and Automated Hybrid Electric Vehicles (CAHEVs) Based on Iterative Dynamic Programming

    Chong Zhu;Fei Lu;Hua Zhang;Jing Sun

  • Development of a high efficiency primary side controlled 7kW wireless power charger

    Junjun Deng;Fei Lu;Siqi Li;Trong-Duy Nguyen

  • Hybrid Energy Storage System of an Electric Scooter Based on Wireless Power Transfer

    Jia-Sheng Hu;Fei Lu;Chong Zhu;Chang-Yi Cheng

  • Review, Analysis, and Design of Four Basic CPT Topologies and the Application of High-Order Compensation Networks

    Yao Wang;Hua Zhang;Fei Lu

  • DC Circuit Breakers: A Technology Development Status Survey

    Sheng Zheng;Reza Kheirollahi;Jiuping Pan;Linxiao Xue

  • A high efficiency 3.3 kW loosely-coupled wireless power transfer system without magnetic material

    Fei Lu;Hua Zhang;Heath Hofmann;Chris Mi

  • A delta-structured switched-capacitor equalizer for series-connected battery strings

    Yunlong Shang;Bing Xia;Fei Lu;Chenghui Zhang

Frequent Co-Authors

Chris Mi
Chris Mi San Diego State University
Heath Hofmann
Heath Hofmann University of Michigan–Ann Arbor
Yunlong Shang
Yunlong Shang Shandong University
Xiaonan Lu
Xiaonan Lu Purdue University West Lafayette
Naxin Cui
Naxin Cui Shandong University
Chenghui Zhang
Chenghui Zhang Shandong University
Weige Zhang
Weige Zhang Beijing Jiaotong University
Xiangning He
Xiangning He Zhejiang University
Patrick P. Mercier
Patrick P. Mercier University of California, San Diego
Huai Wang
Huai Wang Aalborg University

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