Xiaoqing Song
Affiliation confirmed via AI analysis of OpenAlex, ORCID, and web sources.
Assistant Professor
Also affiliated: Florida State University (2014); Beijing Institute of Technology (2012); North China University of Science and Technology (2012); North Carolina State University (2014–2017); Jiangxi University of Water Resources and Electric Power (2020); North China Electric Power University (2020); Shandong University (2004–2006); Tianjin University (2024); Dalian University of Technology (2021); China University of Geosciences (2006–2025); China University of Geosciences (Beijing) (2025); ABB (United States) (2020–2023); Institute of High Energy Physics (1995–2020); Bureau of Geology and Mineral Exploration and Development of Guizhou Province (2022–2025); China Electric Power Research Institute (2012); Nanchang Institute of Technology (2020); Southwest Jiaotong University (2008); Massachusetts Institute of Technology (1995); Anhui Polytechnic University (2025–2026); The University of Texas at Austin (2019); Shanxi Normal University (2022–2024)
Research Areas
Biomedical Subjects
Links
Biography and Research Information
OverviewAI-generated summary
Dr. Xiaoqing Song's research focuses on wide bandgap power semiconductor devices, power electronics packaging, and solid-state switch-based power system protection. He is an Assistant Professor in the Department of Electrical Engineering and Computer Science at the University of Arkansas, Fayetteville.
Prior to joining the University of Arkansas in August 2022, Dr. Song held a position as a principal research scientist at ABB U.S. Corporate Research Center from 2017 to 2022. In this role, he led multidisciplinary research and development projects related to solid-state and hybrid circuit breakers, as well as protection coordination in low-voltage and medium-voltage DC distribution systems. His academic background includes a B.S. and M.S. in electrical engineering from Beijing Institute of Technology and a Ph.D. in electrical engineering from North Carolina State University.
Dr. Song's work has resulted in over 60 peer-reviewed journal and conference papers, two book chapters, and 14 U.S. and international patents. He has received recognition for his contributions, including the 2016 Outstanding Young European Power Electronics (EPE) Association Member Award, the 2020 ABB Inventor of the Year Award, and the 2021 ABB Publisher Award. He is also a recipient of NSF CAREER and RII Track-4 grants totaling $800,000, supporting his work on aggregated wide bandgap multi-chip power modules and high-density, high-operation-temperature traction inverters utilizing gallium oxide packaged power modules. His h-index is 29, with 150 total publications and 2,692 citations.
Metrics
- h-index: 28
- Publications: 153
- Citations: 2,574
Positions
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Assistant Professor 2023–presentUniversity of Arkansas Department of Electrical Engineering and Computer Science ORCID
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University of Arkansas publications 2023–2026ORCID
Selected Publications
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Comparative Study of SiC MOSFETs and Si IGBTs for A Parallel Half-Bridge Modules Based Bidirectional SSCB (2026)
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Automated Near-Field EMI Scanning System Using Robotic Arm for Wide-Bandgap-Based Power Converters (2026)
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A Protection Methodology for Multiport Hybrid DC Circuit Breakers: Fault Detection, Port Identification, and Interruption Control (2026)
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Development of Low Inductance Direct Bonded Flipchip Gallium Nitride Module (2026)
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Dynamic Voltage Balancing in Series-Connected SiC MOSFETs: AI-Assisted Impact Quantification of Device Parameters Variation (2026)
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Self-Powered Gate Driver with Nanosecond-Scale Fault Protection for 650 V GaN HEMTs (2026)
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Evaluation and Design of Bidirectional SSCBs Based on Half-Bridge SiC Modules for MVDC Protection (2026)
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Low Overvoltage Ratio Gas Discharge Tube and Metal Oxide Varistor Hybrid Voltage Clamping Circuit for Solid State Circuit Breaker (2026)
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A Low-Cost Multi-Port Hybrid Circuit Breaker with Common Solid-State Branch (2026)
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Thermal Design and Analysis of Phase Change Material Integrated SiC Based Solid State Circuit Breaker (2026)
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A Simplified and Low-Cost Voltage Balancing Control Method for Series-Connected SiC MOSFETs (2026)
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Ultrafast Static Transfer Switch With Resonant Turn-off and Dynamic Inrush Restraint Capabilities for Data Center Power System Architecture (2026)
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Review of Ultrafast Switching Power Modules: Trends, Challenges, and Technical Solutions (2026)
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A Simplified Gate Driver Architecture for Achieving Fast Switching in Medium-Voltage SiC Power Modules (2025)
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A High-Efficiency Bidirectional Solid-State Circuit Breaker Using Half-Bridge SiC MOSFET Modules for DC Grid Protection (2025)
Federal Grants 2 $800,000 total
CAREER: Aggregated WBG Multi-Chip Power Module for High-Voltage Conversion
Collaboration Network
Top Collaborators
- A Multi-Port Solid State Circuit Breaker for LVDC Protection: Towards A Lossless Design
- Investigation of the Impact of Low Thermal Conductivity on Gallium Oxide Power Module Packaging
- Design of Low Parasitic Inductance GaN HEMT Flip-Chip Power Module
- A Phase Change Material Based Silicon Carbide Power Module Packaging
- A SiC MOSFET Based Multi-Port Solid State Circuit Breaker for DC Protection
Showing 5 of 20 shared publications
- A 10 kV SiC MOSFET Power Module With Optimized System Interface and Electric Field Distribution
- A 10 kV SiC Power Module Stacked Substrate Design with Patterned Middle-layer for Partial Discharge Reduction
- Fabrication and Experimental Validation of Low Inductance SiC Power Module with Integrated Microchannel Cooler
- Design of Low Parasitic Inductance GaN HEMT Flip-Chip Power Module
- Compact Model of β-Ga2O3 Schottky Barrier Diode
Showing 5 of 15 shared publications
- A Multi-Port Solid State Circuit Breaker for LVDC Protection: Towards A Lossless Design
- A SiC MOSFET Based Multi-Port Solid State Circuit Breaker for DC Protection
- Serial Peripheral Interface Based Primary Layer Control of a Solid State Transformer
- A High-Efficiency Bidirectional Solid-State Circuit Breaker Using Half-Bridge SiC MOSFET Modules for DC Grid Protection
- A Minimized Conduction Loss Multiport SSCB Design with Post-Fault Optimization
Showing 5 of 13 shared publications
- Comparative Analysis Between Monolithically Integrated 1.2 kV Bi-Directional MOSFETs and Bi-Directional JBSFETs
- A High-Efficiency Bidirectional Solid-State Circuit Breaker Using Half-Bridge SiC MOSFET Modules for DC Grid Protection
- A Low-Loss Multipart Solid State Circuit Breaker Utilizing Bidirectional Common-Source SiC MOSFETs
- A Low-Cost Multi-Port Hybrid Circuit Breaker with Common Solid-State Branch
- Analysis and Modeling of Switching Dynamics in SiC Bidirectional Field-Effect Transistors
Showing 5 of 10 shared publications
- Design of Low Parasitic Inductance GaN HEMT Flip-Chip Power Module
- Compact Model of β-Ga2O3 Schottky Barrier Diode
- High Temperature Characterization and Degradation Test of a Cascode Gallium Nitride Field Effect Transistor
- Compact Modeling of β -Ga 2 O 3 Lateral Depletion Mode MOSFET
- Thermal Analysis and Modeling of Gallium Oxide Diode-based Half Bridge Power Module
Showing 5 of 7 shared publications
- A 10 kV SiC MOSFET Power Module With Optimized System Interface and Electric Field Distribution
- A 10 kV SiC Power Module Stacked Substrate Design with Patterned Middle-layer for Partial Discharge Reduction
- Fabrication and Experimental Validation of Low Inductance SiC Power Module with Integrated Microchannel Cooler
- Thermal and Bonding Strength Evaluation of Die Attach Materials for Power Module Packaging
- A 10 kV SiC MOSFET Power Module With Optimized System Interface and Electric Field Distribution
- Heterogeneously Integrated 3.3 kV SiC MOSFET Power Module with Multi-layer Substrate and Built-in Gate Drivers
- Evaluation of the Bonding Strength of Die Attachment Techniques for Gallium Oxide Power Devices
- Thermal Analysis and Modeling of Gallium Oxide Diode-based Half Bridge Power Module
- Design of Low Parasitic Inductance GaN HEMT Flip-Chip Power Module
- Compact Model of β-Ga2O3 Schottky Barrier Diode
- Evaluation of the Bonding Strength of Die Attachment Techniques for Gallium Oxide Power Devices
- Thermal Analysis and Modeling of Gallium Oxide Diode-based Half Bridge Power Module
- A 10 kV SiC MOSFET Power Module With Optimized System Interface and Electric Field Distribution
- A 10 kV SiC Power Module Stacked Substrate Design with Patterned Middle-layer for Partial Discharge Reduction
- Fabrication and Experimental Validation of Low Inductance SiC Power Module with Integrated Microchannel Cooler
- SiC Based Solid State Circuit Breaker: Thermal Design and Analysis
- A Novel Hybrid Circuit Breaker Architecture With Built-in Current Limiting Capability – I: Semiconductor Design
- Ultrafast Static Transfer Switch With Resonant Turn-off and Dynamic Inrush Restraint Capabilities for Data Center Power System Architecture
- Review of Ultrafast Switching Power Modules: Trends, Challenges, and Technical Solutions
- Heterogeneously Integrated 3.3 kV SiC MOSFET Power Module with Multi-layer Substrate and Built-in Gate Drivers
- A Simplified Gate Driver Architecture for Achieving Fast Switching in Medium-Voltage SiC Power Modules
- Review of Ultrafast Switching Power Modules: Trends, Challenges, and Technical Solutions
- Design and Evaluation of a 650 V, 300 A GaN-Based Power Module with Integrated Drivers and Ultra-Low Inductance Layout
- A Simplified Gate Driver Architecture for Achieving Fast Switching in Medium-Voltage SiC Power Modules
- A High-Efficiency Bidirectional Solid-State Circuit Breaker Using Half-Bridge SiC MOSFET Modules for DC Grid Protection
- Evaluation and Design of Bidirectional SSCBs Based on Half-Bridge SiC Modules for MVDC Protection
- Comparative Study of SiC MOSFETs and Si IGBTs for A Parallel Half-Bridge Modules Based Bidirectional SSCB
- A High-Efficiency Bidirectional Solid-State Circuit Breaker Using Half-Bridge SiC MOSFET Modules for DC Grid Protection
- Evaluation and Design of Bidirectional SSCBs Based on Half-Bridge SiC Modules for MVDC Protection
- Comparative Study of SiC MOSFETs and Si IGBTs for A Parallel Half-Bridge Modules Based Bidirectional SSCB
- A Simplified and Low-Cost Voltage Balancing Control Method for Series-Connected SiC MOSFETs
- Evaluation and Design of Bidirectional SSCBs Based on Half-Bridge SiC Modules for MVDC Protection
- Dynamic Voltage Balancing in Series-Connected SiC MOSFETs: AI-Assisted Impact Quantification of Device Parameters Variation
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