MANEESH KUMAR
National Institute of Technology Kurukshetra, Indian Institute of Technology Roorkee
About
B.Tech in Electrical engineering from GB Pant University of Agriculture and Technology, Pantnagar, Master's in Electrical engineering from PEC University of Technology, Chandigarh, and PhD from Indian Institute of Technology (IIT) Roorkee, India. Post-doctoral experience from IIT Roorkee. Currently Assistant Professor at NIT Kurukshetra, India. The area of research is microgrids, optimization, demand side management, renewable energy technology etc. Reviewer of many peer-reviewed journals like IEEE Trans. on Smart Grids, IET, IEEE Canadian Journal, etc.
Employment
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National Institute of Technology Kurukshetra Assistant Professor2025 - Present
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Indian Institute of Technology Roorkee Research Associate III2023 - 2025
Education
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Indian Institute of Technology Roorkee Ph.D.2015 - 2021
Projects & Funding
Projects & funding information is unavailable.
Publications (39)
- THERMO-ELECTRICAL PERFORMANCE ASSESSMENT OF PHOTOVOLTAIC THERMAL (PVT) SYSTEM USING HYBRID AND MONO-NANOFLUIDS Save
- An adaptive control strategy for DC–DC buck converter for a small-scale distributed green hydrogen production unit using SPV-battery-based off-grid system Save
- Reliability Issues and Degradation Mechanisms of p-GaN Gated E-Mode AlGaN/GaN Power HEMTs: A Critical Review Save
- A comprehensive techno-economic analysis for hydrogen fuel-cell supported HEVs using predictive control approach Save
- A machine learning-based stochastic optimal energy management framework for a renewable energy-assisted isolated microgrid system Save
- An Adaptive Fuzzy Controller-Based Distributed Voltage Control Strategy for a Remote Microgrid System with Solar Energy and Battery Support Save
- Fundamentals of renewable energy resources for smart cities Save
- Insight into the Investigation of Thermo-Electrical Performance of Hybrid Photovoltaic-Thermal Air-Collector Save
- Machine learning-based thermo-electrical performance improvement of nanofluid-cooled photovoltaic–thermal system Save
- A Comprehensive Power Management Approach for Hydrogen Fuel-cell-Based Hybrid EVs Using PID Controller Save