Daixin Chen
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Also affiliated: Hunan University (2024)
Formerly Arkansas Doctorate, University of Arkansas through 2029.
Research Areas
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Biography and Research Information
OverviewAI-generated summary
Daixin Chen's research focuses on the development and analysis of solid-state circuit breakers, particularly for DC microgrids. Their work involves investigating bidirectional power flow capabilities and high-efficiency designs, often utilizing Silicon Carbide (SiC) MOSFETs and JFETs. Recent publications explore comparative analyses between different semiconductor device types for these applications and the integration of self-powered and multi-port functionalities into circuit breaker designs. Chen has also contributed to research in machine learning, with publications on attention-oriented networks for image processing and denoising 3D point clouds.
Chen collaborates with researchers at the University of Arkansas at Fayetteville, including Xiaoqing Song and Yannal Nawafleh, with whom they have co-authored multiple publications. Their work has resulted in 20 publications and has received 2 citations, with an h-index of 2.
Metrics
- h-index: 2
- Publications: 20
- Citations: 15
Positions
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Hunan University publications 2024the College of Electrical and Information Engineering. ORCID
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Doctorate 2024–2029University of Arkansas at Fayetteville Department of Electrical Engineering and Computer Science ORCID
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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A Protection Methodology for Multiport Hybrid DC Circuit Breakers: Fault Detection, Port Identification, and Interruption Control (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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A Simplified and Low-Cost Voltage Balancing Control Method for Series-Connected SiC MOSFETs (2026)
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Comparative Study of 1.2kV 4H-SiC Bi-Directional MOSFET (BiD-MOS) Design Approaches: 2-Chip vs Monolithic Integration (2026)
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A High-Efficiency Bidirectional Solid-State Circuit Breaker Using Half-Bridge SiC MOSFET Modules for DC Grid Protection (2025)
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Analysis and Modeling of Switching Dynamics in SiC Bidirectional Field-Effect Transistors (2025)
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A Low-Loss Multipart Solid State Circuit Breaker Utilizing Bidirectional Common-Source SiC MOSFETs (2025)
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Comparative Analysis Between Monolithically Integrated 1.2 kV Bi-Directional MOSFETs and Bi-Directional JBSFETs (2025)
Collaboration Network
Top Collaborators
- A Low-Loss Multipart Solid State Circuit Breaker Utilizing Bidirectional Common-Source SiC MOSFETs
- A High-Efficiency Bidirectional Solid-State Circuit Breaker Using Half-Bridge SiC MOSFET Modules for DC Grid Protection
- 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
- Low Overvoltage Ratio Gas Discharge Tube and Metal Oxide Varistor Hybrid Voltage Clamping Circuit for Solid State Circuit Breaker
Showing 5 of 8 shared publications
- A Low-Cost Multi-Port Hybrid Circuit Breaker with Common Solid-State Branch
- A Simplified and Low-Cost Voltage Balancing Control Method for Series-Connected SiC MOSFETs
- Low Overvoltage Ratio Gas Discharge Tube and Metal Oxide Varistor Hybrid Voltage Clamping Circuit for Solid State Circuit Breaker
- Evaluation and Design of Bidirectional SSCBs Based on Half-Bridge SiC Modules for MVDC Protection
- Comparative Analysis Between Monolithically Integrated 1.2 kV Bi-Directional MOSFETs and Bi-Directional JBSFETs
- A Low-Loss Multipart Solid State Circuit Breaker Utilizing Bidirectional Common-Source SiC MOSFETs
- Analysis and Modeling of Switching Dynamics in SiC Bidirectional Field-Effect Transistors
- Comparative Analysis Between Monolithically Integrated 1.2 kV Bi-Directional MOSFETs and Bi-Directional JBSFETs
- Analysis and Modeling of Switching Dynamics in SiC Bidirectional Field-Effect Transistors
- Comparative Study of 1.2kV 4H-SiC Bi-Directional MOSFET (BiD-MOS) Design Approaches: 2-Chip vs Monolithic Integration
- 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
- Comparative Analysis Between Monolithically Integrated 1.2 kV Bi-Directional MOSFETs and Bi-Directional JBSFETs
- Analysis and Modeling of Switching Dynamics in SiC Bidirectional Field-Effect Transistors
- A Low-Cost Multi-Port Hybrid Circuit Breaker with Common Solid-State Branch
- A Simplified and Low-Cost Voltage Balancing Control Method for Series-Connected SiC MOSFETs
- 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
- Comparative Analysis Between Monolithically Integrated 1.2 kV Bi-Directional MOSFETs and Bi-Directional JBSFETs
- Comparative Analysis Between Monolithically Integrated 1.2 kV Bi-Directional MOSFETs and Bi-Directional JBSFETs
- Comparative Analysis Between Monolithically Integrated 1.2 kV Bi-Directional MOSFETs and Bi-Directional JBSFETs
- Comparative Analysis Between Monolithically Integrated 1.2 kV Bi-Directional MOSFETs and Bi-Directional JBSFETs
- Comparative Analysis Between Monolithically Integrated 1.2 kV Bi-Directional MOSFETs and Bi-Directional JBSFETs
- Comparative Analysis Between Monolithically Integrated 1.2 kV Bi-Directional MOSFETs and Bi-Directional JBSFETs
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