Deepsikha Panda
Assistant Professor
pandad.elec@coeptech.ac.in
Electrical Engineering Department COEP Technological University Pune
Phone:
Qualifications
Ph.D. in Electrical Engineering, 2025
School of Computing and Electrical Engineering, Indian Institute of Technology Mandi, Himachal Pradesh.
Thesis:
Real-Time Stability Enhancement in Renewable-Based Off-Grid Hybrid Microgrid System Using Advanced Control Strategies
M.Tech. in Power Systems and Power Electronics, 2016
Siksha ‘O’ Anusandhan University, Bhubaneswar, Odisha.
CGPA: 8.9
B.Tech. in Electrical Engineering, 2013
Biju Patnaik University of Technology, Rourkela, Odisha.
CGPA: 7.5
Experience
Teaching Experience
Guest Lecturer, Department of Electrical Engineering
Government Polytechnic, Balangir, Odisha
Duration: July 2016–November 2016
Research Experience
Research Project: Sensorless Control of Induction Motor Drives
Indian Institute of Technology Mandi
Duration: November 2016–December 2017
Publications
Journal Papers
1.D. Panda, P. Kundu, and B. S. Rajpurohit, “Real-time voltage control and harmonics elimination of islanded microgrid using back-to-back electric spring,” IEEE Transactions on Industry Applications, pp. 1–14, 2024.
2.D. Panda, P. Kundu, and B. S. Rajpurohit, “Real-time voltage control of electric spring in islanded condition,” IET Energy Systems Integration, vol. 5, pp. 1–13, 2023.
3.S. Choudhury, D. Panda, A. Choudhury, and P. K. Rout, “A PV-based autonomous HBCC microgrid performance analysis using adaptive PI and PI controller,” International Journal of Control Theory and Applications, 2016.
Conference Papers
1.D. Panda, P. Kundu, and B. S. Rajpurohit, “Voltage control and harmonics elimination of microgrid using back-to-back electric spring,” in Proc. IEEE IAS Global Conference on Renewable Energy and Hydrogen Technologies, 2023, pp. 1–6.
2.D. Panda, P. Kundu, and B. S. Rajpurohit, “Weak grid control using globally non-overshooting/undershooting controller,” in Proc. IEEE International Conference on Power Electronics, Drives and Energy Systems, 2022, pp. 1–5.
3.D. Panda, B. S. Rajpurohit, and A. Monti, “Synthetic inertia for frequency regulation of electric grid using modular multilevel converter,” in Proc. IEEE Industry Applications Society Annual Meeting, 2019, pp. 1–8.
4.D. Panda, P. Kundu, and B. S. Rajpurohit, “Real-time fuzzy logic-based power quality analysis of hybrid microgrid system,” in Proc. 8th IEEE India International Conference on Power Electronics, 2018, pp. 1–6.
5.S. Pati, K. B. Mohanty, S. K. Kar, and D. Panda, “Voltage and frequency stabilization of a micro-hydro-PV-based hybrid microgrid using STATCOM equipped with battery energy storage system,” in Proc. IEEE International Conference on Power Electronics, Drives and Energy Systems, 2016, pp. 1–5.
6.S. Choudhury, A. Choudhury, D. Panda, and P. K. Rout, “A SOFC-based autonomous microgrid performance analysis using adaptive PI and PI controller,” in Proc. 3rd International Conference on Electrical, Electronics, Engineering Trends, Communication, Optimization and Sciences, 2016, pp. 1–8.
7.S. Choudhury, A. Choudhury, D. Panda, and P. K. Rout, “Optimal control of islanded microgrid with adaptive fuzzy logic and PI controller using HBCC under various voltage and load variations,” in Proc. International Conference on Circuit, Power and Computing Technologies, 2016, pp. 1–8.
8.S. Choudhury, A. Choudhury, D. Panda, and P. K. Rout, “A contingent performance analysis of M-FLC using HBCC in an islanded microgrid,” in Proc. IEEE International Conference on Power Electronics, Intelligent Control and Energy Systems, 2016, pp. 1–6.