Peyman Darvish
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Also affiliated: University of Malaya (2020–2026); Swinburne University of Technology (2024)
Research Areas
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Biography and Research Information
OverviewAI-generated summary
Peyman Darvish is pursuing a Ph.D. in power electronics at the University of Arkansas, following earlier graduate studies in the same field at the University of Malaya. His research is concentrated on wireless power transfer (WPT) technologies, with a specific focus on improving efficiency and tolerance to misalignment in charging systems. His publications address novel coil structures, compensation networks, and modulation strategies for applications such as electric vehicle charging. Darvish has investigated techniques to enhance power transfer capabilities and robustness in dual-transmitter and dual-receiver configurations, as well as cross-overlapped decoupling coil structures for dynamic charging scenarios. He has also contributed to research on mitigating transient DC bias current in specific converter types.
Metrics
- h-index: 8
- Publications: 24
- Citations: 362
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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Circulating Current Suppression for Three-Level Inverters in High-Power High-Density Grid-Connected Applications (2025)
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A High-Density Medium-Voltage Three-Level Interleaved DC/DC Converter for Off-Road Vehicles (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 High-Density Modular DC–DC Converter Design With a Novel Planar Coupled Inductor (2025)
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A Generic Coupled and/or Decoupled Integrated Inductors Optimization for WPT Applications (2025)
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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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Optimization of Integrated Inductors for Wireless Power Transfer Applications (2024)
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Enhanced Triple Phase Shift Modulation Strategy for ANPC-DAB Converter to Extend Soft Switching Range (2024)
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Transient DC Bias Current Mitigation for an ANPC based Triple-Active-Bridge (TAB) Converter (2023)
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Analysis of a QQ Pad for Dynamic Wireless Power Transfer System to Reduce the Power Pulsation and to Increase Output Power (2023)
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Design and Analysis of a New Inductive Coil With Improved Characteristics Than Conventional Magnetic Couplers (2023)
Collaboration Network
Top Collaborators
- 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
- A Generic Coupled and/or Decoupled Integrated Inductors Optimization for WPT Applications
Showing 5 of 10 shared publications
- 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
- A Generic Coupled and/or Decoupled Integrated Inductors Optimization for WPT Applications
Showing 5 of 9 shared publications
- A Generic Coupled and/or Decoupled Integrated Inductors Optimization for WPT Applications
- A High-Density Modular DC–DC Converter Design With a Novel Planar Coupled Inductor
- Optimization of Integrated Inductors for Wireless Power Transfer Applications
- A High-Density Medium-Voltage Three-Level Interleaved DC/DC Converter for Off-Road Vehicles
- Optimization of Fully Integrated Double-Sided LCC with Reduced Stray Field
- A High-Density Modular DC–DC Converter Design With a Novel Planar Coupled Inductor
- A High-Density Medium-Voltage Three-Level Interleaved DC/DC Converter for Off-Road Vehicles
- Optimization of Fully Integrated Double-Sided LCC with Reduced Stray Field
- Circulating Current Suppression for Three-Level Inverters in High-Power High-Density Grid-Connected Applications
- 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
- 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 Fully Integrated Double-Sided LCC with Reduced Stray Field
- Circulating Current Suppression for Three-Level Inverters in High-Power High-Density Grid-Connected Applications
- A High-Density Modular DC–DC Converter Design With a Novel Planar Coupled Inductor
- A High-Density Medium-Voltage Three-Level Interleaved DC/DC Converter for Off-Road Vehicles
- Optimization of Fully Integrated Double-Sided LCC with Reduced Stray Field
- Design and Analysis of a New Inductive Coil With Improved Characteristics Than Conventional Magnetic Couplers
- Analysis of a QQ Pad for Dynamic Wireless Power Transfer System to Reduce the Power Pulsation and to Increase Output Power
- Design and Analysis of a New Inductive Coil With Improved Characteristics Than Conventional Magnetic Couplers
- Analysis of a QQ Pad for Dynamic Wireless Power Transfer System to Reduce the Power Pulsation and to Increase Output Power
- 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
- 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
- An Isolated Triple-Active-Bridge Converter With Highly Dynamic and Adaptive Power Decoupling Control
- Enhanced Triple Phase Shift Modulation with Loss Redistribution for Dual-Active-Bridge DC-DC Converters
- Optimization of Fully Integrated Double-Sided LCC with Reduced Stray Field
- Enhanced Triple Phase Shift Modulation with Loss Redistribution for Dual-Active-Bridge DC-DC Converters
- Circulating Current Suppression for Three-Level Inverters in High-Power High-Density Grid-Connected Applications
- A Generic Transient DC Bias Elimination Method for Dual- and Triple-Active Bridge Converters
- Design and Analysis of a New Inductive Coil With Improved Characteristics Than Conventional Magnetic Couplers
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