Andrea Stratta Data-verified
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Biography and Research Information
OverviewAI-generated summary
Andrea Stratta's research focuses on the design and optimization of power electronic converters and related components. His work has involved developing advanced gate driving systems for silicon carbide (SiC) MOSFETs, including closed-loop current balancing control and four-level active gate drivers with adjustable intermediate gate voltages. Stratta has also investigated novel current sensor designs for switching current measurement in wide bandgap (WBG) devices, such as nonlinear-model-based high-bandwidth sensors and multi-objective designs for Rogowski coils. His publications include research on cryogenic converter designs for all-electric aircraft and the automated and multi-objective design optimization of integrated inductive components for DC-DC converters. Stratta has published 16 papers, accumulating 80 citations, with an h-index of 5. He has collaborated with several researchers at the University of Arkansas at Fayetteville, including Xia Du (6 shared publications), Liyang Du (5 shared publications), Yuxiang Chen (3 shared publications), and H. Alan Mantooth (2 shared publications).
Metrics
- h-index: 5
- Publications: 16
- Citations: 80
Selected Publications
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Multiobjective Optimization and Enhanced Design of an Ω-Shaped Current Sensor for WBG Devices (2025)
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Heterotypic Current Transformer Design for Overcurrent Protection of SiC MOSFET (2023)
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A Nonlinear-Model-Based High-Bandwidth Current Sensor Design for Switching Current Measurement of Wide Bandgap Devices (2023)
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Comprehensive Characterizations and Analysis of Variable Inductor (2022)
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Digital Active Gate Driving System for Paralleled SiC MOSFETs with Closed-loop Current Balancing Control (2022)
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Cryogenic Four-switch Buck-Boost Converter Design for All Electric Aircraft (2022)
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A Four-level Active Gate Driver with Continuously Adjustable Intermediate Gate Voltages (2022)
Collaboration Network
Top Collaborators
- Digital Active Gate Driving System for Paralleled SiC MOSFETs with Closed-loop Current Balancing Control
- A Four-level Active Gate Driver with Continuously Adjustable Intermediate Gate Voltages
- 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 7 shared publications
- 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
- Multiobjective Optimization and Enhanced Design of an Ω-Shaped Current Sensor for WBG Devices
Showing 5 of 7 shared publications
- Digital Active Gate Driving System for Paralleled SiC MOSFETs with Closed-loop Current Balancing Control
- A Four-level Active Gate Driver with Continuously Adjustable Intermediate Gate Voltages
- A Nonlinear-Model-Based High-Bandwidth Current Sensor Design for Switching Current Measurement of Wide Bandgap Devices
- Multi-objective Design Optimization for Current Sensor Rogowski Coil
- Multiobjective Optimization and Enhanced Design of an Ω-Shaped Current Sensor for WBG Devices
Showing 5 of 6 shared publications
- Digital Active Gate Driving System for Paralleled SiC MOSFETs with Closed-loop Current Balancing Control
- A Four-level Active Gate Driver with Continuously Adjustable Intermediate Gate Voltages
- A Nonlinear-Model-Based High-Bandwidth Current Sensor Design for Switching Current Measurement of Wide Bandgap Devices
- Multiobjective Optimization and Enhanced Design of an Ω-Shaped Current Sensor for WBG Devices
- Heterotypic Current Transformer Design for Overcurrent Protection of SiC MOSFET
- Optimal Integrated Design of a Magnetically Coupled Interleaved H-Bridge
- Automated design of integrated inductive components for DC-DC converters
- Emerging technologies and needs
- Optimal Integrated Design of a Magnetically Coupled Interleaved H-Bridge
- Automated design of integrated inductive components for DC-DC converters
- Emerging technologies and needs
- A Nonlinear-Model-Based High-Bandwidth Current Sensor Design for Switching Current Measurement of Wide Bandgap Devices
- Multiobjective Optimization and Enhanced Design of an Ω-Shaped Current Sensor for WBG Devices
- Heterotypic Current Transformer Design for Overcurrent Protection of SiC MOSFET
- Optimal Integrated Design of a Magnetically Coupled Interleaved H-Bridge
- Automated design of integrated inductive components for DC-DC converters
- Optimal Integrated Design of a Magnetically Coupled Interleaved H-Bridge
- Automated design of integrated inductive components for DC-DC converters
- Optimal Integrated Design of a Magnetically Coupled Interleaved H-Bridge
- Automated design of integrated inductive components for DC-DC converters
- Optimal Integrated Design of a Magnetically Coupled Interleaved H-Bridge
- Automated design of integrated inductive components for DC-DC converters
- Digital Active Gate Driving System for Paralleled SiC MOSFETs with Closed-loop Current Balancing Control
- Multi-objective Design Optimization for Current Sensor Rogowski Coil
- A Four-level Active Gate Driver with Continuously Adjustable Intermediate Gate Voltages
- A Four-level Active Gate Driver with Continuously Adjustable Intermediate Gate Voltages
- Cryogenic Four-switch Buck-Boost Converter Design for All Electric Aircraft
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