About
Deepak Kumar(Senior Member, IEEE) received B.Eng. degree in electrical and electronics engineering and the M.Eng. degree in electrical engineering from the Birla Institute of Technology (B.I.T Mesra), Ranchi, India, in 2007 and 2011, respectively, and the Ph.D. degree in power systems from the School of Electrical Sciences, Indian Institute of Technology, Bhubaneswar, India, in 2016. He has been an Assistant Professor with the Department of Electrical and Electronics Engineering, BIT, since June 2015. He has more than 9 years of experience in teaching and research. In 2018, he visited the Department of Electrical Engineering and Automation, Aalto University, Espoo, Finland, as a Postdoctoral Research Fellow. He has authored/co-authored several research papers in reputable quality journals, such as IEEE Transactions on Smart Grid, IEEE SYSTEMS JOURNAL, IET Generation, Transmission Distribution, Applied Energy, IJEPES (Elsevier),and EPSR etc. His research interests include blockchain application in the energy distribution sector for energy trading application, microgrid control including distributed generations, GFM and GFL based inverter control for seamless transition, distributed energy storage systems, demand-side management, distribution system design and planning, and applications of intelligent computational techniques to power systems. Dr. Kumar was the recipient of the prestigious national level POSOCO Power System Award under Doctoral category in recognition for his research contribution in the power system field, in 2016.
Employment
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MNIT Assistant Professor2026 - Present
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Birla Institute of Technology, Mesra Assistant Professor2015 - 2026
Education
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Aalto University Post Doc2018 - 2018
Projects & Funding
Projects & funding information is unavailable.
Publications (90)
- Finite-Time Convergent Adaptive Sliding Mode Control for Integration of VSCs Into Modernized Microgrids With Parametric and Dynamic Uncertainties Save
- Blockchain-Integrated Stackelberg Model for Real-Time Price Regulation and Demand-Side Optimization in Microgrids Save
- Enhanced microgrid management using sliding mode control with blockchain-enabled smart contracts for uncertainty regulation Save
- A sybil-resilient and privacy-aware blockchain architecture for dynamic demand response in decentralized microgrids Save
- A Nonlinear Spatio-Temporal Dynamical Stabilization and Control for Inverter Based Networked Microgrids: Energy Function Based Approach Save
- Decentralized energy trading in microgrids: a blockchain-integrated model for efficient power flow with social welfare optimization Save
- Design and Demonstration of an IEC 61850-Based Distribution Substation Using Digital Twin Technology Save
- Dynamical Stability Analysis of Grid-Following and Grid-Forming Inverters With Blockchain Integration for Enhanced Performance in Modernized Nested Microgrids Save
- Editorial: Demand side management in microgrids Save
- Conservation Voltage Reduction Integrated EV Control Strategy toward Self-Sufficiency of Standalone Microgrid Save