Arvind Kumar
CSIR-Central Electronics Engineering Research Institute (CEERI), Pilani, Rajasthan, India, Indian Institute of Technology (Indian School of Mines), Bikaner Technical University
About
Arvind Kumar is a dedicated researcher in Electrical Engineering with a strong academic background and hands-on experience in power system stability, advanced control, and renewable energy integration. He received his Ph.D. in Electrical Engineering (Power Systems) from Bikaner Technical University, where his doctoral research focused on wide-area damping control under operational uncertainties in modern power systems. He also holds an M.E. in Power Systems from Gujarat Technological University and a B.Tech. in Electrical Engineering from Rajasthan Technical University.
He is currently working as a Project Associate at CSIR–Central Electronics Engineering Research Institute, Pilani, Rajasthan, India, in the HPMSG Group, where he is engaged in research and development activities related to power converters, power electronic systems, and modern power system applications. Prior to this, he worked as a Research Assistant in the Department of Electrical Engineering at Indian Institute of Technology (Indian School of Mines), Dhanbad, contributing to the SERB–DST funded research project titled “Investigation of Interoperability of Grid-Forming Assets in Hybrid Power Systems”, supported by the Science and Engineering Research Board under the Department of Science and Technology.
His research work spans modeling, control design, stability analysis, simulation, and experimental validation of power electronic interfaces and grid-forming assets in inverter-dominated and hybrid power systems. His core research interests include Power Converters, Power System Stability and Control, Grid-Forming Inverter Control, Wide-Area Damping Control, Load Frequency Control, and Energy Management in Microgrids and Smart Grids. He is also actively exploring artificial intelligence and soft-computing techniques for improving the reliability, security, and operational intelligence of power systems, distributed generation, electric vehicles, and advanced transmission networks.
With research publications in reputed international journals and conferences and a patent to his credit, he aims to bridge the gap between theoretical advancements and practical implementation, contributing to the development of resilient, intelligent, and sustainable future power systems.
Employment
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CSIR-Central Electronics Engineering Research Institute (CEERI), Pilani, Rajasthan, India Project Associate2025 - Present
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Indian Institute of Technology (Indian School of Mines) Research Assistant2024 - 2025
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University College of Engineering and Technology Lecturer2016 - 2018
Education
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Bikaner Technical University PhD2018 - 2023
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Gujrat technological university ahmedabd ME/MTech2014 - 2016
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Rajasthan Technical University Btech2010 - 2014
Projects & Funding
Projects & funding information is unavailable.
Publications (47)
- Experimental evaluation of advanced delay-compensated speed control of a four-quadrant chopper-fed DC motor for microgrid prime mover applications Save
- Real-time frequency regulation in AC microgrid using electric vehicles with V2G and G2V support: Simulation and hardware-in-the-loop validation Save
- Design and performance assessment of a green hydrogen and renewable integrated hybrid industrial microgrid with advanced control strategies considering uncertainties of renewable energy Save
- Stability Enhancement of Grid-Connected AC Microgrid with Discrete Design Periodic Output Feedback Controller Save
- A SYSTEM AND METHOD FOR STABLE POWER SHARING IN MICROGRIDS WITH PV VOLTAGE AND CURRENT SENSOR-LESS SELFLIMITING THREE-PHASE AUTONOMOUS PV GENERATOR Save
- Design and Analysis of an MPP-Operated Single-Stage Grid-Forming Photovoltaic Inverter Using Virtual Synchronous Generator Control Save
- Development of Various Adaptive Control Strategies for Enhancing Virtual Synchronous Generator Performance in Grid-Integrated Systems Save
- Coordinated Hybrid VAR Compensation Strategy with Grid-Forming BESS and Solar PV for Enhanced Stability in Inverter-Dominated Power Systems Save
- Simultaneous Damping and Frequency Control in AC Microgrid Using Coordinated Control Considering Time Delay and Noise Save
- Stability Enhancement of AC Microgrid Using Discrete Mode Controllers with Optimum Sampling Frequency Save