Yuqi Wei
Affiliation confirmed via AI analysis of OpenAlex, ORCID, and web sources.
Post-doc
Also affiliated: Chongqing University (2018–2021); Northwestern Polytechnical University (2025); Shaanxi University of Technology (2021); Beijing Jiaotong University (2025); Kyoto Institute of Technology (2017); Christian-Albrechts-Universität zu Kiel (2021–2022); Shantou University (2021); State Key Laboratory of Power Transmission and Distribution Equipment and System Safety and New Technology (2018–2020); State Key Laboratory of Electrical Insulation and Power Equipment (2022–2024); Heilongjiang University (2024–2026); Xi'an Jiaotong University (2022–2026)
Research Areas
Biomedical Subjects
Links
Biography and Research Information
OverviewAI-generated summary
Yuqi Wei's research focuses on power electronics, particularly wide band gap devices, design automation, and cryogenic power electronics. He has authored or co-authored numerous publications in this field, including work on LLC resonant converters, three-port DC-DC converters, and active gate drivers for silicon carbide devices. His academic background includes multiple master's degrees in Electrical Engineering from the University of Wisconsin-Milwaukee and Chongqing University, and a Ph.D. in Electrical Engineering from the University of Arkansas, Fayetteville. Wei also spent time as a Visiting Researcher at Kiel University.
His contributions to the field have been recognized with several awards, including the 2020 IEEE Power Electronics Society Transactions Second Place Prize Paper Award, the 2021 IEEE IFEEC Best Conference Paper Award, and the 2022 IEEE TEC Prize Ph.D. Thesis Talk Award. Wei has held a Post-doc researcher position at the University of Arkansas and is currently a tenure-track Research Professor at Xi'an Jiaotong University. His scholarly output includes a substantial number of publications, with an h-index of 32 and over 3,700 citations.
Metrics
- h-index: 32
- Publications: 195
- Citations: 3,727
Positions
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Research Professor 2023–presentXi'an Jiaotong University Electrical Engineering ORCID
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Post-doc 2022–presentUniversity of Arkansas Electrical Engineering ORCID
Selected Publications
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Adaptive silicon carbide gate drivers in integrated circuit form (2026)Journal of the Arkansas Academy of Science OpenAlex
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GaN HEMT and Air Core Magnetics based Power Converters Evaluations at Cryogenic Temperature (2024)
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LTspice Modeling for GaN-GIT HEMT Including Cryogenic Temperature (2024)
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Cryogenic Overcurrent Characteristic of GaN HEMT and Converter Evaluation (2024)
Collaboration Network
Top Collaborators
- Overview of Modulation Strategies for LLC Resonant Converter
- Comprehensive Analysis and Design of LLC Resonant Converter With Magnetic Control
- A Magnetically Controlled Single-Stage AC–DC Converter
- Hybrid Control Strategy for LLC Converter With Reduced Switching Frequency Range and Circulating Current for Hold-Up Time Operation
- A Hybrid Half-bridge LLC Resonant Converter and Phase Shifted Full-bridge Converter for High Step-up Application
Showing 5 of 65 shared publications
- A Review of Switching Slew Rate Control for Silicon Carbide Devices Using Active Gate Drivers
- A Complete Step-by-Step Optimal Design for LLC Resonant Converter
- A Fault-Tolerant Hybrid Cascaded H-Bridge Multilevel Inverter
- Synchronous Rectification for LLC Resonant Converter: An Overview
- An LLC Converter With Multiple Operation Modes for Wide Voltage Gain Range Application
Showing 5 of 49 shared publications
- Overview of Modulation Strategies for LLC Resonant Converter
- Topology Analysis and Review of Three-Port DC–DC Converters
- A Complete Step-by-Step Optimal Design for LLC Resonant Converter
- Five-Degree-of-Freedom Modulation Scheme for Dual Active Bridge DC–DC Converter
- Comprehensive Analysis and Design of LLC Resonant Converter With Magnetic Control
Showing 5 of 42 shared publications
- Hybrid Si/SiC Switches: A Review of Control Objectives, Gate Driving Approaches and Packaging Solutions
- Comparisons and Evaluations of Silicon and Wide Band Gap Devices at Cryogenic Temperature
- Survey of Cryogenic Power Electronics for Hybrid Electric Aircraft Applications
- Variable Gate Voltage Control for Paralleled SiC MOSFETs
- Comprehensive Cryogenic Characterizations of a Commercial 650 V GaN HEMT
Showing 5 of 30 shared publications
- A High Efficiency and Low Cost ANPC Inverter Using Hybrid Si/SiC Switches
- Hybrid Si/SiC Switches: A Review of Control Objectives, Gate Driving Approaches and Packaging Solutions
- Cryogenic Characterization and Modeling of Silicon Superjunction MOSFET for Power Loss Estimation
- Control Strategies Overview for LLC Resonant Converter with Fixed Frequency Operation
- Application of An Active Gate Driver for Paralleling Operation of Si IGBT and SiC MOSFET
Showing 5 of 24 shared publications
- A Fault-Tolerant Hybrid Cascaded H-Bridge Multilevel Inverter
- Survey of Cryogenic Power Electronics for Hybrid Electric Aircraft Applications
- Variable Gate Voltage Control for Paralleled SiC MOSFETs
- Cryogenic Characterization and Modeling of Silicon Superjunction MOSFET for Power Loss Estimation
- A New Family of 7-Level Boost Active Neutral Point Clamped Inverter
Showing 5 of 17 shared publications
- A Four-level Active Gate Driver with Continuously Adjustable Intermediate Gate Voltages
- Digital Active Gate Driving System for Paralleled SiC MOSFETs with Closed-loop Current Balancing Control
- Multi-level Active Gate Driver for SiC MOSFETs with Paralleling Operation
- Application of An Active Gate Driver for Paralleling Operation of Si IGBT and SiC MOSFET
- A Nonlinear-Model-Based High-Bandwidth Current Sensor Design for Switching Current Measurement of Wide Bandgap Devices
Showing 5 of 13 shared publications
- Variable Gate Voltage Control for Paralleled SiC MOSFETs
- Cryogenic Characterization and Modeling of Silicon Superjunction MOSFET for Power Loss Estimation
- Functionality and Performance Evaluation of Gate Drivers under Cryogenic Temperature
- Cryogenic Characterization and Modeling of Silicon IGBT for Hybrid Aircraft Application
- Four Control Freedoms AGD for Hybrid SiC MOSFET and Si IGBT Application
Showing 5 of 11 shared publications
- Topology Analysis and Review of Three-Port DC–DC Converters
- Five-Degree-of-Freedom Modulation Scheme for Dual Active Bridge DC–DC Converter
- Optimal Asymmetric Duty Modulation to Minimize Inductor Peak-to-Peak Current for Dual Active Bridge DC–DC Converter
- A Hybrid Five-Variable Modulation Scheme for Dual-Active-Bridge Converter With Minimal RMS Current
- Comprehensive Optimization Modulation Scheme of Low Current Level and Wide ZVS Range for Dual Active Bridge Converter With Dead-Zone Control
Showing 5 of 10 shared publications
- Topology Analysis and Review of Three-Port DC–DC Converters
- A Complete Step-by-Step Optimal Design for LLC Resonant Converter
- Optimal Asymmetric Duty Modulation to Minimize Inductor Peak-to-Peak Current for Dual Active Bridge DC–DC Converter
- Hybrid Duty Modulation for Dual Active Bridge Converter to Minimize RMS Current and Extend Soft-Switching Range Using the Frequency Domain Analysis
- Simple and Effective Adaptive Deadtime Strategies for LLC Resonant Converter: Analysis, Design, and Implementation
Showing 5 of 9 shared publications
- Five-Degree-of-Freedom Modulation Scheme for Dual Active Bridge DC–DC Converter
- Optimal Asymmetric Duty Modulation to Minimize Inductor Peak-to-Peak Current for Dual Active Bridge DC–DC Converter
- A Hybrid Five-Variable Modulation Scheme for Dual-Active-Bridge Converter With Minimal RMS Current
- Comprehensive Optimization Modulation Scheme of Low Current Level and Wide ZVS Range for Dual Active Bridge Converter With Dead-Zone Control
- Hybrid Duty Modulation for Dual Active Bridge Converter to Minimize RMS Current and Extend Soft-Switching Range Using the Frequency Domain Analysis
Showing 5 of 9 shared publications
- Self-Tuning Multiport Resonant DC/DC Converter Based on Actively-Controlled Inductors for Hybrid Storage System Integration
- A General and Automatic RMS Current Oriented Optimal Design Tool for LLC Resonant Converters
- Multiport Resonant DC-DC Converter using Actively-Controlled Inductors for Hybrid Energy Storage System Integration
- Energy Optimization Management Strategy for DC Nano-Grid Cluster With High Comprehensive Energy Efficiency
- Analysis and Design of a Multiport Resonant DC-Transformer for Solid-State Transformer Applications
Showing 5 of 9 shared publications
- Survey of Cryogenic Power Electronics for Hybrid Electric Aircraft Applications
- Cryogenic Characterization and Modeling of Silicon Superjunction MOSFET for Power Loss Estimation
- Cryogenic Characterization and Modeling of Silicon IGBT for Hybrid Aircraft Application
- Cryogenic Evaluation and Modeling of a 900 V Cascode GaN HEMT
- Electrical characterization of a 1200V GaN HEMT at cryogenic temperatures
Showing 5 of 8 shared publications
- Self-Tuning Multiport Resonant DC/DC Converter Based on Actively-Controlled Inductors for Hybrid Storage System Integration
- A General and Automatic RMS Current Oriented Optimal Design Tool for LLC Resonant Converters
- Multiport Resonant DC-DC Converter using Actively-Controlled Inductors for Hybrid Energy Storage System Integration
- Analysis and Design of a Multiport Resonant DC-Transformer for Solid-State Transformer Applications
- RMS Current based Automated Optimal Design Tool for LLC Resonant Converters
Showing 5 of 8 shared publications
- A Four-level Active Gate Driver with Continuously Adjustable Intermediate Gate Voltages
- Digital Active Gate Driving System for Paralleled SiC MOSFETs with Closed-loop Current Balancing Control
- A Nonlinear-Model-Based High-Bandwidth Current Sensor Design for Switching Current Measurement of Wide Bandgap Devices
- Cryogenic Four-switch Buck-Boost Converter Design for All Electric Aircraft
- Multi-objective Design Optimization for Current Sensor Rogowski Coil
Showing 5 of 8 shared publications
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