Essam Hussain | Power Electronics | Best Researcher Award

Dr. Essam Hussain | Power Electronics | Best Researcher Award

Power Electronics Reseach Lead at Tae Power Solutions, United Kingdom

Dr. Essam Hussain is a Principal Power Electronics Engineer and research lead at TAE Power Solutions, Birmingham, UK. With a Ph.D. in Electronic and Electrical Engineering from the University of Sheffield, his expertise spans advanced power converter topologies, microgrids, energy storage, and renewable energy systems. He has held key academic and industry roles, including at CRRC Times Electric UK and the University of Exeter. Dr. Hussain’s work focuses on multilevel converters, Si/SiC devices, and modular energy solutions. A recognized IEEE member and IET peer reviewer, he has contributed to several high-impact research projects and is deeply engaged in academic teaching and supervision.

Professional Profile

GOOGLE SCHOLAR

ORCID

Summary of Suitability for Best Researcher Award

Dr. Essam Hussain is an accomplished and multidisciplinary researcher with over two decades of expertise spanning power electronics, renewable energy systems, microgrids, and machine drives. His impactful contributions to the development of advanced converter topologies, fault-tolerant machine drives, and energy storage systems position him as a leading innovator in the field of electronic and electrical engineering.

🎓 Education

  • 🧠 Ph.D. in Electronic & Electrical Engineering, University of Sheffield, UK 
    Thesis: Converter Topologies of Single Phase Parallel Voltage Source Inverters Fed from Renewable Energy Sources

  • ⚙️ M.Sc. in Electrical Engineering, Assiut University, Egypt
    Thesis: Performance of Reluctance Motors Fed from Variable Frequency Supplies

  • 💡 B.Sc. in Electrical Engineering, Assiut University, Egypt

💼 Work Experience

🔹 Principal Power Electronics Engineer, TAE Power Solutions, Birmingham, UK

🔧 Research Lead in converter design, safety systems, and product innovation across HW/SW integration

🔹 Senior Power Electronics Design Engineer, CRRC Times Electric UK Innovation Center

🔬 Specialized in multilevel Si/SiC converters, onboard high-voltage applications, and railway systems

🔹 Business Research Fellow, University of Exeter

⚡ Focused on microgrids, solid-state transformers, and replacing diesel with renewable systems

🔹 Research Associate, University of Sheffield

🌀 Worked on microgrids, flywheel-based storage, aerospace PM drives, and fault-tolerant control systems

🔹 Assistant Lecturer, Aswan University, Egypt

📚 Lectured in Electrical Engineering and supervised undergrad/graduate student projects

🏆 Honors & Awards

  • 🎖️ Fully Funded PhD Scholarship, Egyptian Ministry of Higher Education

  • 🎓 Postgraduate Certificate in Academic Practice (PCAP), University of Exeter, UK

🔬 Research & Project Highlights

  • 🔌 Current Projects:

    • Deeply Integrated H-Bridge Converter (£80k)

    • Isolated Multilevel Converters (£100k)

  • 🔍 Previous Projects:

    • Power Losses in Parallel Devices (£40k)

    • Medium Voltage DC-DC Converter (£30k)

    • Free-Piston Linear Alternator (w/ Libertine & UoSheffield)

    • Smart Grid Flywheel System (w/ WilliamsF1)

    • 2M€ EMMAS Actuator Systems Project

    • 8M€ Intelligent Community Energy (UK & EU partners)

🧪 Skills & Expertise

  • ⚡ Power Converters: MMC, DAB, Active Rectifier, SST

  • 🔧 Machine Drives: PM, Reluctance motors

  • 🔁 Drive Fault Diagnosis & Post-Fault Operation

  • 🌞 Renewable Energy: PV, Wind, Fuel Cells, Smart Grids

  • 🔋 Energy Storage: Flywheels, Batteries

  • 💻 Simulation & Software: MATLAB/Simulink, ANSYS, Cadence, PLECS, dSPACE, HIL, C/C++, Flux, Femm

👨‍🏫 Teaching & Supervision

  • 📚 8+ Years Teaching: Analog/Digital Circuits, Power Electronics, Microprocessors

  • 🎓 Supervision: Final Year Projects, MSc Co-Supervision, PhD Student Support

  • 🛠️ Lab Demonstration & Feedback, especially in AC Machines and Drive Systems

🧑‍🏫 Training & Workshops

  • 🧩 Teaching Excellence: Small-Group Teaching, Assessment & Feedback (University of Sheffield)

  • ⚖️ Safety & Equality: Health & Safety, Equality, Information Governance (Exeter)

  • 🌐 IET Peer Reviewer | 🧠 IEEE Member

📚 Top Noted Publications

Assist-as-needed control of an intrinsically compliant robotic gait training orthosis

Cited : 106

Magnetically geared pseudo direct drive for safety critical applications

Cited : 32

Improved single‐phase self‐synchronised synchronverter with enhanced dynamics and current limitation capability

Cited : 24

Single-phase self-synchronized synchronverter with current-limiting capability

Cited : 19

A single-phase self-synchronized synchronverter with bounded droop characteristics

Cited : 18

 

Mr. Amir Ebrahimi Shohani | Electric Machines | Best Researcher Award

Mr. Amir Ebrahimi Shohani | Electric Machines | Best Researcher Award

Mr. Amir Ebrahimi Shohani ,  Electric Machines,  Research Assistant at K. N. Toosi University of Technology, Iran

Amir Ebrahimi Shohani is an electrical engineer specializing in electric machines, power electronics, and control systems. He holds a Master’s degree from K. N. Toosi University of Technology, Tehran, where he focused on the optimal design and simulation of outer-rotor flux switching permanent magnet motors for electric vehicles. With experience in academic research, industry consulting, and teaching assistance, Amir has demonstrated a solid command of both theory and practical implementation. His work spans electromagnetic design using Ansys Maxwell, motor control using MATLAB/Simulink, and hands-on maintenance of industrial motors. Amir is passionate about the future of electric mobility and renewable energy integration. He is known for his technical precision, problem-solving abilities, and collaborative mindset.

Professional Profile

Google Scholar

🎓 Education

Amir completed his M.Sc. in Electrical Engineering (Electric Machines and Power Electronics) at K. N. Toosi University of Technology in 2021. His thesis explored the optimal design and simulation of an outer-rotor flux switching permanent magnet (FSPM) motor aimed at electric vehicle applications, combining finite element analysis with control strategies using Ansys Maxwell and MATLAB. He previously earned his B.Sc. in Electrical Engineering from Sahand University of Technology, where he completed a thesis on ESO-based repetitive control systems for handling disturbances in motor systems. His academic training provided a solid grounding in motor design, modeling, and real-world implementation of power electronics.

💼 Experience

Amir has a rich blend of academic and industrial experience. As a Research Assistant at K. N. Toosi University (2019–2021), he worked on the simulation and control of electric machines, including FSPM motors and Vernier machines. In industry, he served as a Power Engineer at Pars East Neyzar Alloy Co. (2023–2024), overseeing instrumentation and installation processes. He also worked at Khakdaman Co. as a Technical Assistant, where he rewound and maintained high-power three-phase induction motors. Earlier, he gained practical exposure through an apprenticeship at Pardis Steel Company, maintaining panelboards and drives. These experiences have made him adept at bridging simulation with industrial application.

🔬 Research Interests

Amir Ebrahimi Shohani’s research focuses on electrical machines, especially flux switching permanent magnet (FSPM) motors, Vernier machines, and motor control systems for electric vehicle and industrial applications. He specializes in electromagnetic modeling using Ansys Maxwell and dynamic simulation and control using MATLAB/Simulink. His master’s thesis targeted the optimal design of outer-rotor FSPM motors, emphasizing performance, efficiency, and suitability for EV integration. Other interests include renewable energy systems, PWM-based speed control, and robust control algorithms like ESO-based repetitive control. Amir’s interdisciplinary work connects academic design with industrial reliability, aiming to enhance the next generation of high-performance, cost-efficient, and sustainable electric drives.

🏅 Awards

While formal awards are not listed, Amir’s achievements speak through his progressive academic journey and technical accomplishments. He earned positions as a Teaching Assistant for multiple electric machines courses at K. N. Toosi University, reflecting faculty trust in his knowledge and communication skills. His selection for hands-on projects during both research and employment indicates a high degree of competence and reliability. His master’s and bachelor’s theses addressed cutting-edge topics like flux switching motors and model-free disturbance rejection—critical to the future of electric mobility. Amir’s industrial roles further affirm his adaptability and growing reputation in Iran’s power engineering sector. His dedication to electrical systems, combined with both academic and technical impact, illustrates his emerging leadership in the field.

📚Top Noted  Publications

Title: 2‐D Electromagnetic Analysis Coupled With 3‐D Thermal Analysis of a Dual‐PM Excited Flux‐Switching Generator With Overhang Structure for Direct Drive Wind Turbines

Title: A Comparative Analysis of Two Different Types of Permanent Magnet Motors with Outer-Rotor Structure for Direct Drive Applications

Conclusion

In conclusion, Amir Ebrahimi Shohani’s diverse profile—spanning academic innovation, technical application, and industry impact—makes him well-suited for the Best Researcher Award. His commitment to advancing electric motor technology, particularly for sustainable and energy-efficient systems, reflects strong research potential and long-term contribution to the field of electrical engineering.