Daniel J Rogers

Daniel J Rogers

University of Oxford

H-index: 21

Europe-United Kingdom

About Daniel J Rogers

Daniel J Rogers, With an exceptional h-index of 21 and a recent h-index of 18 (since 2020), a distinguished researcher at University of Oxford, specializes in the field of Power electronics, energy storage, power systems, electrical machines.

His recent articles reflect a diverse array of research interests and contributions to the field:

Real-Time Energy Storage Simulators for the Electricity Grid

Assessing the impact of distributed energy storage in future distribution grids

Cryogenic Rds(on) of a GaN Power Transistor at High Currents

A comparison of the hard-switching performance of 650V power transistors with calorimetric verification

Fast Switching of GaN Transistors using a Boosted Gate Voltage

Distributed secondary control based on dynamic diffusion algorithm for current sharing and average voltage regulation in dc microgrids

Fast Switching of High Power GaN Transistors

Generation of controllable magnetic stimuli

Daniel J Rogers Information

University

Position

Associate Professor

Citations(all)

1409

Citations(since 2020)

1125

Cited By

609

hIndex(all)

21

hIndex(since 2020)

18

i10Index(all)

32

i10Index(since 2020)

29

Email

University Profile Page

Google Scholar

Daniel J Rogers Skills & Research Interests

Power electronics

energy storage

power systems

electrical machines

Top articles of Daniel J Rogers

Real-Time Energy Storage Simulators for the Electricity Grid

2024/1/29

Assessing the impact of distributed energy storage in future distribution grids

2023/1/1

Cryogenic Rds(on) of a GaN Power Transistor at High Currents

2023/10/29

Daniel J Rogers
Daniel J Rogers

H-Index: 13

A comparison of the hard-switching performance of 650V power transistors with calorimetric verification

IEEE Open Journal of Power Electronics

2023/9/14

Daniel J Rogers
Daniel J Rogers

H-Index: 13

Kawsar Ali
Kawsar Ali

H-Index: 4

Fast Switching of GaN Transistors using a Boosted Gate Voltage

2023/9/4

Distributed secondary control based on dynamic diffusion algorithm for current sharing and average voltage regulation in dc microgrids

Journal of Modern Power Systems and Clean Energy

2023/8/29

Fast Switching of High Power GaN Transistors

2023/5/9

Generation of controllable magnetic stimuli

2023/4/6

xTMS: A Pulse Generator for Exploring Transcranial Magnetic Stimulation Therapies

2023/3/19

A discrete-time algorithm for real time energy management in DC microgrids

IEEE Transactions on Power Electronics

2022/12/21

Fei Gao
Fei Gao

H-Index: 40

Jiahao Yu
Jiahao Yu

H-Index: 0

Daniel J Rogers
Daniel J Rogers

H-Index: 13

A linear regression data compression algorithm for an islanded DC microgrid

Sustainable Energy, Grids and Networks

2022/12/1

Daniel J Rogers
Daniel J Rogers

H-Index: 13

A compact auxiliary power supply design for a medium frequency solid state transformer

IEEE Transactions on Transportation Electrification

2022/8/25

A multi-inverter high-power wireless power transfer system with wide ZVS operation range

IEEE Transactions on Power Electronics

2022/8/2

Zero-additional-hardware power line communication for DC–DC converters

IEEE Transactions on Power Electronics

2022/5/26

Daniel J Rogers
Daniel J Rogers

H-Index: 13

A resonant inductor integrated-transformer-based receiver for wireless power transfer systems

IEEE Transactions on Industrial Electronics

2022/5/17

Xin Liu
Xin Liu

H-Index: 3

Fei Gao
Fei Gao

H-Index: 40

Daniel J Rogers
Daniel J Rogers

H-Index: 13

Fast Switching of High Current WBG Power Devices

2022/5/10

Modified Minimum Spanning Tree for Optimised DC Microgrid Cabling Design

IEEE Transactions on Smart Grid

2022/4/1

Design analysis and circuit topology optimization for programmable magnetic neurostimulator

2021/12/9

A Compact Design Using GaN Semiconductor Devices for a Flying Capacitor Five-Level Inverter

2021/10/10

Comparison of Gate-drive Switching Control for GaN HEMT Power Devices

2021/10/10

See List of Professors in Daniel J Rogers University(University of Oxford)

Co-Authors

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