Hui Cao
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Biography and Research Information
OverviewAI-generated summary
Hui Cao's research focuses on power electronics converters, particularly those employing advanced semiconductor technologies and modulation strategies. Cao has investigated novel structures for wireless power transfer systems, including those with improved tolerance to rotational misalignment. Research has also centered on triple-active-bridge converters, exploring methods for power decoupling and control strategies for solid-state transformers in DC fast charging applications. Additionally, Cao has worked on the design and demonstration of medium-voltage, high-power converters utilizing silicon carbide technology, with a focus on optimized busbar architecture and enhanced modulation strategies to extend soft-switching ranges. Other work includes developing high-frequency sampling methods for power conversion systems and addressing transient DC bias current mitigation in converter designs. Cao has a h-index of 8 and has published 25 papers with 160 citations.
Metrics
- h-index: 8
- Publications: 26
- Citations: 160
Selected Publications
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A Generic Transient DC Bias Elimination Method for Dual- and Triple-Active Bridge Converters (2026)
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Design and Optimization of High-Frequency Medium-Voltage Dual Active Bridge DC/DC Converter Using SiC Device (2025)Journal of the Arkansas Academy of Science OpenAlex
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Circulating Current Suppression for Three-Level Inverters in High-Power High-Density Grid-Connected Applications (2025)
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Enhanced Triple Phase Shift Modulation with Loss Redistribution for Dual-Active-Bridge DC-DC Converters (2025)
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Optimization of Fully Integrated Double-Sided LCC with Reduced Stray Field (2025)
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An Isolated Triple-Active-Bridge Converter With Highly Dynamic and Adaptive Power Decoupling Control (2025)
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A Generic Coupled and/or Decoupled Integrated Inductors Optimization for WPT Applications (2025)
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An ANPC-Based Building Block for Medium-Voltage Applications (2025)
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New Passive Damped-LCL-Filter Based Three-Phase Four-Leg Shunt Active Power Filter (2024)
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Double Line Frequency Voltage Ripple Reduction Control Strategy for Dual-Active-Bridge in DC/AC System (2024)
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Optimal Point Derive for SiC MOSFET Switching Ringing Damping with Active Gate Driver Control (2024)
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Optimization of Integrated Inductors for Wireless Power Transfer Applications (2024)
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DC-link Voltages Digital Sampling for Cascaded H-Bridge Rectifiers with Single Voltage Sensor under Hierarchical Model Predictive Control (2024)
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Modular Design of Solid-State Transformer with High Flexibility (2024)
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Enhanced Triple Phase Shift Modulation Strategy for ANPC-DAB Converter to Extend Soft Switching Range (2024)
Collaboration Network
Top Collaborators
- Novel Power Decoupling Methods for Three-Port Triple-Active-Bridge Converters
- A Triple Active Bridge (TAB) Based Solid-State Transformer (SST) for DC Fast Charging Systems: Architecture and Control Strategy
- Enhanced Triple Phase Shift Modulation Strategy for ANPC-DAB Converter to Extend Soft Switching Range
- Physics-Based Magnetic Modeling of a Three-Port Transformer in a Triple-Active-Bridge Converter with Decoupled Power Flow Regulation
- A Simple Switching-Event Dependent High-Frequency Sampling Method for Power Conversion System
Showing 5 of 19 shared publications
- Dual-Receiver Based Naturally Decoupled Coil Structure With Improved Rotational Misalignment Tolerance for WPT Systems
- Enhanced Triple Phase Shift Modulation Strategy for ANPC-DAB Converter to Extend Soft Switching Range
- Transient DC Bias Current Mitigation for an ANPC based Triple-Active-Bridge (TAB) Converter
- Double Line Frequency Voltage Ripple Reduction Control Strategy for Dual-Active-Bridge in DC/AC System
- An Isolated Triple-Active-Bridge Converter With Highly Dynamic and Adaptive Power Decoupling Control
Showing 5 of 11 shared publications
- A Triple Active Bridge (TAB) Based Solid-State Transformer (SST) for DC Fast Charging Systems: Architecture and Control Strategy
- A Simple Switching-Event Dependent High-Frequency Sampling Method for Power Conversion System
- Double Line Frequency Voltage Ripple Reduction Control Strategy for Dual-Active-Bridge in DC/AC System
- An ANPC based High-Power Medium-Voltage Triple Active Bridge (TAB) DC-DC Converter with Enhanced Modulations
- A Simple Gate Driver Design for SiC MOSFET Paralleled Operation
Showing 5 of 8 shared publications
- A Triple Active Bridge (TAB) Based Solid-State Transformer (SST) for DC Fast Charging Systems: Architecture and Control Strategy
- Double Line Frequency Voltage Ripple Reduction Control Strategy for Dual-Active-Bridge in DC/AC System
- An ANPC based High-Power Medium-Voltage Triple Active Bridge (TAB) DC-DC Converter with Enhanced Modulations
- New Passive Damped-LCL-Filter Based Three-Phase Four-Leg Shunt Active Power Filter
- Modular Design of Solid-State Transformer with High Flexibility
Showing 5 of 8 shared publications
- A Simple Switching-Event Dependent High-Frequency Sampling Method for Power Conversion System
- An ANPC based High-Power Medium-Voltage Triple Active Bridge (TAB) DC-DC Converter with Enhanced Modulations
- A Simple Gate Driver Design for SiC MOSFET Paralleled Operation
- An Online High-Frequency Resonant Current Digitalization Method for CLLC Converters
- Single Current Measurement Based Bidirectional Frequency Tracking for Unregulated Series Resonant Dab Converters
Showing 5 of 6 shared publications
- A Simple Gate Driver Design for SiC MOSFET Paralleled Operation
- An Online High-Frequency Resonant Current Digitalization Method for CLLC Converters
- Single Current Measurement Based Bidirectional Frequency Tracking for Unregulated Series Resonant Dab Converters
- Optimal Point Derive for SiC MOSFET Switching Ringing Damping with Active Gate Driver Control
- Enhanced Triple Phase Shift Modulation Strategy for ANPC-DAB Converter to Extend Soft Switching Range
- Double Line Frequency Voltage Ripple Reduction Control Strategy for Dual-Active-Bridge in DC/AC System
- DC-link Voltages Digital Sampling for Cascaded H-Bridge Rectifiers with Single Voltage Sensor under Hierarchical Model Predictive Control
- Optimization of Fully Integrated Double-Sided LCC with Reduced Stray Field
- Novel Power Decoupling Methods for Three-Port Triple-Active-Bridge Converters
- Physics-Based Magnetic Modeling of a Three-Port Transformer in a Triple-Active-Bridge Converter with Decoupled Power Flow Regulation
- An Isolated Triple-Active-Bridge Converter With Highly Dynamic and Adaptive Power Decoupling Control
- A Simple Gate Driver Design for SiC MOSFET Paralleled Operation
- An Online High-Frequency Resonant Current Digitalization Method for CLLC Converters
- Optimal Point Derive for SiC MOSFET Switching Ringing Damping with Active Gate Driver Control
- A Triple Active Bridge (TAB) Based Solid-State Transformer (SST) for DC Fast Charging Systems: Architecture and Control Strategy
- Transient DC Bias Current Mitigation for an ANPC based Triple-Active-Bridge (TAB) Converter
- An ANPC based High-Power Medium-Voltage Triple Active Bridge (TAB) DC-DC Converter with Enhanced Modulations
- Enhanced Triple Phase Shift Modulation Strategy for ANPC-DAB Converter to Extend Soft Switching Range
- Double Line Frequency Voltage Ripple Reduction Control Strategy for Dual-Active-Bridge in DC/AC System
- New Passive Damped-LCL-Filter Based Three-Phase Four-Leg Shunt Active Power Filter
- A Generic Coupled and/or Decoupled Integrated Inductors Optimization for WPT Applications
- Optimization of Integrated Inductors for Wireless Power Transfer Applications
- Optimization of Fully Integrated Double-Sided LCC with Reduced Stray Field
- Double Line Frequency Voltage Ripple Reduction Control Strategy for Dual-Active-Bridge in DC/AC System
- Optimization of Integrated Inductors for Wireless Power Transfer Applications
- New Passive Damped-LCL-Filter Based Three-Phase Four-Leg Shunt Active Power Filter
- Novel Power Decoupling Methods for Three-Port Triple-Active-Bridge Converters
- Physics-Based Magnetic Modeling of a Three-Port Transformer in a Triple-Active-Bridge Converter with Decoupled Power Flow Regulation
- A 4.16kV/750kVA MV Power Conditioning System for Distribution System Applications
- An ANPC-Based Building Block for Medium-Voltage Applications
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