Tim C Green

Tim C Green

Imperial College London

H-index: 77

Europe-United Kingdom

About Tim C Green

Tim C Green, With an exceptional h-index of 77 and a recent h-index of 51 (since 2020), a distinguished researcher at Imperial College London, specializes in the field of Power Systems, Power Electronics, Energy Networks.

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

Impedance Margin Ratio: a New Metric for Small-Signal System Strength

Rebalancing Needs and Services for Future Grids: System Needs and Service Provisions With Increasing Shares of Inverter-Based Resources

Analytical Design of Contributions of Grid-Forming & Grid-Following Inverters to Frequency Stability

Descriptor State Space Modeling of Power Systems

Optimal Circulant Modulation for Submodule Voltage Ripple Minimization With Inherent Balancing Capability in Modular Multilevel DC-DC Converters

The intrinsic communication in power systems: a new perspective to understand synchronization stability

The Evolution of Smart Grids

Optimal Circulant Modulation for Submodule Capacitor Ripple Minimization and Inherent Voltage Balancing in Modular Multilevel DC Converters

Tim C Green Information

University

Position

___

Citations(all)

28243

Citations(since 2020)

10325

Cited By

22358

hIndex(all)

77

hIndex(since 2020)

51

i10Index(all)

255

i10Index(since 2020)

148

Email

University Profile Page

Google Scholar

Tim C Green Skills & Research Interests

Power Systems

Power Electronics

Energy Networks

Top articles of Tim C Green

Impedance Margin Ratio: a New Metric for Small-Signal System Strength

IEEE Transactions on Power Systems

2024/2/28

Rebalancing Needs and Services for Future Grids: System Needs and Service Provisions With Increasing Shares of Inverter-Based Resources

IEEE Power and Energy Magazine

2024/2/23

Analytical Design of Contributions of Grid-Forming & Grid-Following Inverters to Frequency Stability

IEEE Transactions on Power Systems

2024/1/9

Descriptor State Space Modeling of Power Systems

arXiv

2023

Optimal Circulant Modulation for Submodule Voltage Ripple Minimization With Inherent Balancing Capability in Modular Multilevel DC-DC Converters

IEEE Transactions on Power Electronics

2023/10/9

The intrinsic communication in power systems: a new perspective to understand synchronization stability

IEEE Transactions on Circuits and Systems I: Regular Papers

2023/8/18

The Evolution of Smart Grids

Proceedings of the IEEE

2023/7/11

Optimal Circulant Modulation for Submodule Capacitor Ripple Minimization and Inherent Voltage Balancing in Modular Multilevel DC Converters

2023/6/9

Consideration of Control-Loop Interaction in Transient Stability of Grid-Following Inverters using Bandwidth Separation Method

2023/5/22

Injection amplitude guidance for impedance measurement in power systems

IEEE Transactions on Power Electronics

2023/3/13

Experimental study on the influence of MMC control design on the propagation of AC grid-unbalance to a DC network

2023/1/1

Tim C Green
Tim C Green

H-Index: 50

Swing equation modelling of GFL inverter and comparison of its damping and inertia with GFM inverter

2023/1/1

Fast fault current VIA statcom with electronic tap-changer

2022/1/1

Tim C Green
Tim C Green

H-Index: 50

Coprime Polynomial Based Dual-Circulant Modulation for Inherent Submodule Voltage Balancing in MMDC

IEEE Transactions on Industrial Electronics

2022/12/1

Dual-circulant Modulation for Inherent Submodule Voltage Balancing in MMDC

2022/11/4

Comparative Analysis of Transient Stability of Grid-Forming and Grid-Following Inverters

2022/11/4

Power system stability with a high penetration of inverter-based resources

Proceedings of the IEEE

2022/6/15

Island in the Sea: The prospects and impacts of an offshore wind power hub in the North Sea

Advances in Applied Energy

2022/6/1

Impedance-based root-cause analysis: Comparative study of impedance models and calculation of eigenvalue sensitivity

IEEE Transactions on Power Systems

2022/5/30

See List of Professors in Tim C Green University(Imperial College London)

Co-Authors

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