Andrea Stratta
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Also affiliated: University of Pisa (2019); University of Nottingham (2019–2023); ABB (Germany) (2019)
Research Areas
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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, particularly for wide bandgap (WBG) devices and specialized applications. His work has investigated digital active gate driving systems for paralleled SiC MOSFETs, employing closed-loop current balancing control. Stratta has also explored advanced gate driver designs, including a four-level active gate driver with adjustable intermediate gate voltages. His research extends to the development of high-bandwidth current sensors for switching current measurement of WBG devices, utilizing nonlinear-model-based approaches and multiobjective optimization. Additionally, his publications include work on the heterogeneous integration of magnetic component windings on ceramic substrates and the optimal integrated design of magnetically coupled interleaved H-bridges. Stratta has also contributed to the design of cryogenic four-switch buck-boost converters for all-electric aircraft and the 3D structure design of magnetic ferrite cores.
Metrics
- h-index: 5
- Publications: 16
- Citations: 90
Positions
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PhD student 2018–2022University of Nottingham Faculty of Engineering Power Electronics Machine and Control (PEMC) ORCID
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
- Comprehensive Characterizations and Analysis of Variable Inductor
Showing 5 of 6 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
- Multiobjective Optimization and Enhanced Design of an Ω-Shaped Current Sensor for WBG Devices
- Comprehensive Characterizations and Analysis of Variable Inductor
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
- 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
- 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
- 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
- Digital Active Gate Driving System for Paralleled SiC MOSFETs with Closed-loop Current Balancing Control
- Comprehensive Characterizations and Analysis of Variable Inductor
- Comprehensive Characterizations and Analysis of Variable Inductor
- Heterotypic Current Transformer Design for Overcurrent Protection of SiC MOSFET
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