World's Best Scientists 2026 revealed!

D-Index & Metrics

Electronics and Electrical Engineering

D-Index
38
Citations
5999
World Ranking
4913
National Ranking
725

Overview

Laili Wang is affiliated with Xi'an Jiaotong University in China, with an extensive research output concentrated in the field of Engineering, particularly Electrical and Electronic Engineering. Their work spans diverse subfields including Mechanical Engineering, Materials Chemistry, Automotive Engineering, and Control and Systems Engineering.

The scientist's research primarily focuses on advanced topics within semiconductor technologies and power electronics. Key areas of specialization include:

  • Silicon Carbide Semiconductor Technologies
  • Advanced DC-DC Converters
  • Multilevel Inverters and Converters
  • Electromagnetic Compatibility and Noise Suppression
  • Wireless Power Transfer Systems
  • Advancements in Semiconductor Devices and Circuit Design
  • Energy Harvesting in Wireless Networks

Laili Wang has contributed to both journal articles and book chapters. One notable book publication is The Proceedings of the 9th Frontier Academic Forum of Electrical Engineering (2021), published by Springer Science+Business Media.

Their frequent collaborators include Yunqing Pei, Fengtao Yang, Xu Yang, Yongmei Gan, and Wenjie Chen, each contributing significantly to their research output.

The publishing venues where Laili Wang most often appears are primarily focused on power electronics and related fields. These venues include:

  • IEEE Transactions on Power Electronics
  • IEEE Journal of Emerging and Selected Topics in Power Electronics
  • IEEE Transactions on Industrial Electronics
  • 2021 IEEE Workshop on Wide Bandgap Power Devices and Applications in Asia (WiPDA Asia)
  • 2022 International Conference on Power Energy Systems and Applications (ICoPESA)

Some recent publications further illustrate the scope of their research:

  • "Balancing the pre-aggregation and crystallization kinetics enables high efficiency slot-die coated organic solar cells with reduced non-radiative recombination losses" (2020), Energy & Environmental Science
  • "A High-Efficiency High-Power-Density On-Board Low-Voltage DC-DC Converter for Electric Vehicles Application" (2021), IEEE Transactions on Power Electronics
  • "Free-Rotation Wireless Power Transfer System Based on Composite Anti-Misalignment Method for AUVs" (2023), IEEE Transactions on Power Electronics
  • "A Joint Control With Variable ZVS Angles for Dynamic Efficiency Optimization in Wireless Power Transfer System" (2020), IEEE Transactions on Power Electronics
  • "A High-Efficiency ZVS Wireless Power Transfer System for Electric Vehicle Charging With Variable Angle Phase Shift Control" (2020), IEEE Journal of Emerging and Selected Topics in Power Electronics

Laili Wang's body of work exhibits a consistent engagement with both theoretical and applied aspects of power electronics and semiconductor technologies, addressing efficiency optimization and system design challenges in areas such as wireless power transfer and electric vehicle power systems.

Best Publications

  • An Interleaved LLC Resonant Converter Operating at Constant Switching Frequency

    Zhiyuan Hu;Yajie Qiu;Laili Wang;Yan-Fei Liu

  • Analysis, Design, and Implementation of Accurate ZVS Angle Control for EV Battery Charging in Wireless High-Power Transfer

    Yongbin Jiang;Laili Wang;Yue Wang;Junwen Liu

  • Analysis, Design, and Implementation of WPT System for EV's Battery Charging Based on Optimal Operation Frequency Range

    Yongbin Jiang;Laili Wang;Yue Wang;Junwen Liu

  • A Multiloop Method for Minimization of Parasitic Inductance in GaN-Based High-Frequency DC–DC Converter

    Kangping Wang;Laili Wang;Xu Yang;Xiangjun Zeng

  • Instability Analysis and Oscillation Suppression of Enhancement-Mode GaN Devices in Half-Bridge Circuits

    Kangping Wang;Xu Yang;Laili Wang;Praveen Jain

  • Bipolar Ripple Cancellation Method to Achieve Single-Stage Electrolytic-Capacitor-Less High-Power LED Driver

    Yajie Qiu;Laili Wang;Hongliang Wang;Yan-Fei Liu

  • An Accurate Design Algorithm for LLC Resonant Converters—Part II

    Zhiyuan Hu;Laili Wang;Hongliang Wang;Yan-Fei Liu

  • Effect of Asymmetric Layout and Unequal Junction Temperature on Current Sharing of Paralleled SiC MOSFETs With Kelvin-Source Connection

    Cheng Zhao;Laili Wang;Fan Zhang

  • A High-Efficiency High-Power-Density On-Board Low-Voltage DC–DC Converter for Electric Vehicles Application

    Xiang Zhou;Bo Sheng;Wenbo Liu;Yang Chen

  • A Compact Gate Control and Voltage-Balancing Circuit for Series-Connected SiC MOSFETs and Its Application in a DC Breaker

    Yu Ren;Xu Yang;Fan Zhang;Kangping Wang

  • A High-Bandwidth Integrated Current Measurement for Detecting Switching Current of Fast GaN Devices

    Kangping Wang;Xu Yang;Hongchang Li;Laili Wang

  • Free-Rotation Wireless Power Transfer System Based on Composite Anti-Misalignment Method for AUVs

    Unknown

  • Bang-Bang charge control for LLC resonant converters

    Zhiyuan Hu;Laili Wang;Yan-Fei Liu;P. C. Sen

  • A Compact Coupler With Integrated Multiple Decoupled Coils for Wireless Power Transfer System and its Anti-Misalignment Control

    Unknown

  • A Joint Control With Variable ZVS Angles for Dynamic Efficiency Optimization in Wireless Power Transfer System

    Yongbin Jiang;Laili Wang;Jingyang Fang;Chenxu Zhao

  • Phase-Locked Loop Combined With Chained Trigger Mode Used for Impedance Matching in Wireless High Power Transfer

    Yongbin Jiang;Laili Wang;Yue Wang;Min Wu

  • A High-Efficiency ZVS Wireless Power Transfer System for Electric Vehicle Charging WithVariable Angle Phase Shift Control

    Yongbin Jiang;Laili Wang;Jingyang Fang;Ruibang Li

  • Modeling of Litz-Wire DD Coil With Ferrite Core for Wireless Power Transfer System

    Unknown

  • A Dual-Sided Control Strategy Based on Mode Switching for Efficiency Optimization in Wireless Power Transfer System

    Min Wu;Xu Yang;Wenjie Chen;Laili Wang

  • Common Capacitor Multiphase LLC Converter With Passive Current Sharing Ability

    Hongliang Wang;Yang Chen;Yajie Qiu;Peng Fang

  • Cu Clip-Bonding Method With Optimized Source Inductance for Current Balancing in Multichip SiC MOSFET Power Module

    Unknown

  • A Method to Balance Dynamic Current of Paralleled SiC MOSFETs With Kelvin Connection Based on Response Surface Model and Nonlinear Optimization

    Cheng Zhao;Laili Wang;Fan Zhang;Fengtao Yang

  • Voltage Suppression in Wire-Bond-Based Multichip Phase-Leg SiC MOSFET Module Using Adjacent Decoupling Concept

    Yu Ren;Xu Yang;Fan Zhang;Laili Wang

  • A Compact Double-Sided Cooling 650V/30A GaN Power Module With Low Parasitic Parameters

    Bingyang Li;Xu Yang;Kangping Wang;Hongkeng Zhu

Frequent Co-Authors

Yan-Fei Liu
Yan-Fei Liu Queen's University
Paresh C. Sen
Paresh C. Sen Queen's University
Kevin J. Chen
Kevin J. Chen Hong Kong University of Science and Technology
Jin Wei
Jin Wei Peking University
Praveen Jain
Praveen Jain Queen's University
Xiaogang Liu
Xiaogang Liu National University of Singapore

If you think any of the details on this page are incorrect, let us know.

Report an issue

We appreciate your kind effort to assist us to improve this page, it would be helpful providing us with as much detail as possible in the text box below:

Related Online Degrees & Career Pathways

For those interested in Electronics and Electrical Engineering, exploring related online degrees can expand career opportunities and skill sets. Many students seek accelerated online bachelor degree programs accredited, which offer flexibility for working professionals aiming to complete their studies faster without sacrificing quality.

Additionally, pursuing a master's in training and development online can prepare engineers for leadership roles in technical training, organizational development, or educational program design, complementing technical expertise with strong communication and management skills.

Competency-based education models are gaining popularity for their focus on demonstrated skills over time spent in class. Students may consider enrolling in programs from a list of competency-based colleges to tailor their learning pace and directly apply practical knowledge to career goals.

Military families also benefit from supportive educational environments. Specific programs are designed with flexibility in mind, and institutions recognized as the military spouse online college provide resources that accommodate unique challenges faced by military spouses and dependents pursuing further education.

Best Scientists Citing Laili Wang

Trending Scientists

Recently Published Articles