Gokhan Ozkan

Gokhan Ozkan

Clemson University

H-index: 11

North America-United States

About Gokhan Ozkan

Gokhan Ozkan, With an exceptional h-index of 11 and a recent h-index of 11 (since 2020), a distinguished researcher at Clemson University, specializes in the field of Distributed Control, Power Electronic Control, Thermal Management, Applications on Energy System Modeling, Model Predictive Cont.

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

Machine Learning Approach for Open Circuit Fault Detection and Localization in EV Motor Drive Systems

Emerging trends and challenges in thermal management of power electronic converters: A state of the art review

Impact of Vehicle-to-Grid (V2G) on Battery Degradation in a Plug-in Hybrid Electric Vehicle

A Real-Time Degradation Abatement Technique in Hybrid Electric Vehicle Using Data-Driven Method

A real-time prognostic-based control framework for hybrid electric vehicles

Impact of Active Cooling on the Thermal Management of 3-Level NPC Converter for Hybrid Electric Vehicle Application

A Novel 1-ϕ Cuk Based On-Board EV Charger with Minimal Power Components

Model Free Time Delay Compensation for Damped Impedance Method Interfaced Power System Co-Simulation Testing

Gokhan Ozkan Information

University

Position

Post-doctoral Researcher

Citations(all)

375

Citations(since 2020)

349

Cited By

88

hIndex(all)

11

hIndex(since 2020)

11

i10Index(all)

15

i10Index(since 2020)

15

Email

University Profile Page

Google Scholar

Gokhan Ozkan Skills & Research Interests

Distributed Control

Power Electronic Control

Thermal Management

Applications on Energy System Modeling

Model Predictive Cont

Top articles of Gokhan Ozkan

Machine Learning Approach for Open Circuit Fault Detection and Localization in EV Motor Drive Systems

2024/4/9

Emerging trends and challenges in thermal management of power electronic converters: A state of the art review

2024/4/8

Impact of Vehicle-to-Grid (V2G) on Battery Degradation in a Plug-in Hybrid Electric Vehicle

2024/4/9

A Real-Time Degradation Abatement Technique in Hybrid Electric Vehicle Using Data-Driven Method

Gokhan and Papari, Behnaz and Edrington, Christopher S., A Real-Time Degradation Abatement Technique in Hybrid Electric Vehicle Using Data-Driven Method

2023/12/22

A real-time prognostic-based control framework for hybrid electric vehicles

IEEE Access

2023/11/14

Impact of Active Cooling on the Thermal Management of 3-Level NPC Converter for Hybrid Electric Vehicle Application

2023/10/31

A Novel 1-ϕ Cuk Based On-Board EV Charger with Minimal Power Components

2023/10/31

Model Free Time Delay Compensation for Damped Impedance Method Interfaced Power System Co-Simulation Testing

2023/10/31

Geographically Distributed Real Time Co-Simulation Testbed For Community Microgrids

2022/5/17

Overview of interface algorithms, interface signals, communication and delay in real-time co-simulation of distributed power systems

IEEE Access

2023/9/19

Power Converters Coolant: Past, Present, Future, and a Path Toward Active Thermal Control in Electrified Ship Power Systems

IEEE Access

2023/8/24

Security Enhancement of Cyber-Physical DC Ship Power System Using Scalable Deep Learning Method

2023/8/1

Active Thermal Control of AC/DC Power Converter Considering Health Monitoring of Power Modules

2023/8/1

Integrating degradation forecasting into distribution grids’ advanced distribution management systems

International Journal of Electrical Power & Energy Systems

2023/8/1

Battery degradation in electric and hybrid electric vehicles: A survey study

IEEE Access

2023/4/27

A Resilient Distributed Control and Energy Management Approach for DERs and EVs with Application to EV Charging Stations

IFAC-PapersOnLine

2023/1/1

Degradation abatement in hybrid electric vehicles using data-driven technique

Transportation Research Procedia

2023/1/1

Cyber Attack Detection and Classification for Integrated On-board Electric Vehicle Chargers subject to Stochastic Charging Coordination

Transportation Research Procedia

2023/1/1

Distributed adaptive power management for medium voltage ship power systems

Journal of Marine Engineering & Technology

2022/9/3

A novel switching method in PV‐fed quasi‐ZSI‐DVR for voltage quality enhancement of photovoltaic integrated networks

IET Renewable Power Generation

2022/8/18

See List of Professors in Gokhan Ozkan University(Clemson University)

Co-Authors

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