SUKANTA DAS
Also known as: S DAS, Das, S, Das S, SUKANTA DAS
Department of Electrical Engineering, Indian Institute of Technology (Indian School of Mines) Dhanbad, Indian Institute of Engineering Science and Technology
About
Dr. Sukanta Das received the Bachelor of Engineering degree in Electrical Engineering from Jalpaiguri Government Engineering College, Jalpaiguri, India, in 2002, and the Masters of Engineering and Ph.D. degrees in Electrical Engineering from Bengal Engineering and Science University (now known as the Indian Institute of Engineering Science and Technology), Howrah, India, in 2004 and 2013, respectively.
Dr. Das is currently an Associate Professor & Head of the Department of Electrical Engineering, Indian Institute of Technology (ISM), Dhanbad, India. Apart from teaching regular courses on Electrical Machines & Drives, he is actively involved in Research & Development work. He has accomplished a few projects sponsored by SERB, DHI etc. and is also currently involved in other Industry projects with Mahindra & Mahindra Ltd. India. Till date, Prof. Das has guided 8 students towards their Ph.D degrees. Moreover, 26 students have completed their M.Tech. dissertations under his supervision. He has authored /coauthored about 65 publications in journals /conferences.
His current research interests include fault-tolerant control of induction motor drives, energy efficient operation of induction motor drives, predictive control of machine drives, fast charging of electrical vehicle and other aspects of electrical machine drives. Presently, Dr. Das is a Senior Member of IEEE and Fellow of IEI.
Employment
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Department of Electrical Engineering, Indian Institute of Technology (Indian School of Mines) Dhanbad Associate Professor2021 - Present
Education
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Indian Institute of Engineering Science and Technology Ph.D.2002 - 2013
Projects & Funding
Projects & funding information is unavailable.
Publications (82)
- Active Power Based MRAS for Estimation of Inverse Rotor Time Constant in Field-Oriented Control of Induction Motor Drive Save
- A Forward Derived n-module High Buck Topology Save
- Single-Phase Integrated Onboard Battery Charger Incorporating Symmetrical Six-Phase Induction Motor Save
- Model Predictive Current Control of Induction Motor Drives Integrated with Rotor Speed Estimator Save
- Model Predictive Current Control of Induction Motor Drive Integrated with Inverse Rotor Time Constant Estimator Save
- Enhanced Sensoreless Speed Control of PMSM Drives via Adaptive Observers and Evolutionary Algorithm Save
- Current Sensor Fault-Tolerant Control for Model Predictive Control of Induction Motor Drives Save
- Active Power Based MRAS for Estimation of Rotor Resistance in Field-Oriented Control of Induction Motor Drive Save
- An Online Efficient Loss Model Controller for Rotor-Field Oriented Induction Motor Drives Save
- Fault-Tolerant Technique Against Current Sensors for Model Predictive Control of Induction Motor Drives Save