About
Anup Kumar Panda received the B.Tech in Electrical Engineering from Sambalpur University, India, M.Tech in Power Electronics and Drives from Indian Institute of Technology, Kharagpur, India, and Ph.D.from Utkal University in 1987, 1993, and 2001 respectively. In 1990 he joined as a lecturer in IGIT, Sarang, and served there for eleven years, and then in January 2001 joined the National Institute of Technology, Rourkela as an Assistant Professor and currently continuing as a Professor HAG in the Department of Electrical Engineering, National Institute of Technology Rourkela. He has published more than two hundred articles in referred journals and conferences, with total 5169 citations, h-index 40 and i10-index 130. He has completed three MHRD projects, one CSIR, and one NaMPET project. Guided twenty seven Ph.D. scholars and presently guiding five scholars in the area of Power Electronics & Drives. He is a Fellow of the Institute of Engineering and Technology UK, the Institute of Engineers India, and the Institute of Electronics and Telecommunication Engineering. He is also a senior member of IEEE USA. He is awarded the Institute Endowed Chair Professor Award in 2018. He is also awarded the prestigious “Samanta Chandra Sekhar Award” for outstanding contribution in Science and Technology by Odisha Bigyan Academy, Department of Science & Technology, Government of Odisha. He is among Stanford University’s top 2% most influential scientists for 2020, 2021 and 2022.
His research interest includes design of high-frequency power conversion circuits and Applications of Soft Computing Techniques, improvement in Multilevel Converter Topology, Power Factor Improvement, Power quality Improvement in power systems, and electric drives.
Employment
Employment history is unavailable.
Education
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National Institute of Technology Rourkela Ph.D.2001 - Present
Projects & Funding
Projects & funding information is unavailable.
Publications (271)
- A robust variable-λ least logarithmic hyperbolic cosine function adaptive filtering-based control algorithm for grid-connected solar PV system Save
- Grid integrated multifunctional EV charging infrastructure with improved power quality Save
- A Novel Quadruple Boost Inverter With New Optimized Fuzzy Based Switching Scheme Save
- A Unified Control of Grid-Interactive Off-Board EV Battery Charger With Improved Power Quality Save
- A novel cascaded transformer coupled multilevel inverter with reduced number of switches for high power applications Save
- A robust generalized soft-root-sign adaptive filter algorithm for a grid-coupled PV system Save
- A single-source nine-level boost inverter with new optimal switching scheme for EV applications Save
- A variable step size robust normalized least mean absolute third-based control scheme for a grid-tied multifunctional photovoltaic system Save
- Adaptive active and reactive power control strategy for virtual synchronous generator Save
- Advanced off-board bidirectional electric vehicle charger with enhanced power quality and supporting grid resilience Save