About
Kalpana Chaudhary (M’12-SM’20) is currently Full Professor with the Department of Electrical Engineering, Indian Institute of Technology (Banaras Hindu University), Varanasi (U.P.), India. She has more than twenty years of teaching and research
experience. She was awarded Ph.D. degree in 2009 by Indian Institute of Technology (Banaras Hindu University), Varanasi (UP) India She has supervised four Ph. D Thesis and 52 M.Tech Dissertation. She is a Senior Member of the IEEE and Fellow of the Institution of Engineers (India). She has published more than 30 scientific articles, book chapters and research papers in indexed international journals and prestigious conference proceedings. She has published a book as a sole author and three book chapters. She is the recipient of prestigious SERB POWER Fellowship of Government of India in 2021 for outstanding performance in her area of specialization. She is
the Principal Investigator of two research projects sponsored by Government of India. She is the reviewer of many prestigious journals including IEEE Transaction of Power Electronics, IEEE Transaction of Industrial Electronics, IEEE Journal of Selected Topics in Power Electronics, Advances in Space Research (Elsevier), Progress in electromagnetic Research.
Email: [email protected]
Employment
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Indian Institute of Technology (Banaras Hindu University) Professor2002 - Present
Education
Education history is unavailable.
Projects & Funding
Projects & funding information is unavailable.
Publications (52)
- Design of Hyperloop System Using Single-Sided Linear Induction Motor (SLIM) Save
- Coupled Inductor‐Based High Gain Converter With Reduced Stress for PV Application Save
- High gain bipolar converter with reduced input current ripple for fuel cell integrated DC microgrid Save
- A Novel Bidirectional Multiport DC-DC Converter For Hybrid Energy System Save
- Four Port Bidirectional Converter with Sliding Mode Control for Hybrid Renewable Systems Save
- Quadratic High-Gain Converter with Switched Inductor and Bidirectional Interface for Renewable DC Microgrids Save
- Sliding Mode Control Based Analysis of Photovoltaic and Fuel Cell Integrated Hybrid Electric System Save
- Efficient Dual-Input DC-DC Converter Design for Fuel Cell Electric Vehicle Integration Save
- AC to DC bridgeless SEPIC converter-based fuel cell emulator Save
- A qualitative assessment of hydrogen generation techniques for fuel cell applications Save