Vivekanandan Subburaj
National Institute Of Technology Silchar, REVA University, National Institute of Technology Karnataka, Anna University, Chennai, Sree Vidyanikethan Engineering College, Anna University
About
Dr. Vivekanandan S received his B.E. and M.E. degrees in Electrical and Electronics Engineering from Anna University, Chennai, in 2011 and 2013, respectively, earning a University Rank in his M.E. He completed his Ph.D. in Electrical and Electronics Engineering from NIT Karnataka, Mangalore, in 2019, focusing on low-power circuit design.
He has served as an Associate Professor at REVA University, Bengaluru, and since 2022, he has been an Assistant Professor in the Electrical Engineering Department at NIT Silchar. His research interests include low-voltage DC–DC converter topology, low-power electronics for portable computing, power management ICs, and chargers.
Dr. Vivekanandan received the Best Paper Award at TENCON 2018, is a member of IEEE, and has published in leading journals such as IEEE Transactions, IET, and Elsevier. He has served as a guest editor for SCOPUS and WoS journals, an editorial board member for several conferences, and has organized IEEE and Scopus-indexed conferences, workshops, and government-supported training programs.
Employment
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National Institute Of Technology Silchar Assistant Professor2022 - Present
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REVA University Associate Professor2020 - 2022
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Sree Vidyanikethan Engineering College Associate Professor2019 - 2020
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Tagore Engineering College Assistant Professor2013 - 2014
Education
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National Institute of Technology Karnataka PhD2014 - 2019
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Anna University, Chennai M.E2011 - 2013
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Anna University B.E2011 - 2013
Projects & Funding
Projects & funding information is unavailable.
Publications (47)
- Innovative design and modeling of step-up/down configuration of an asymmetrical multilevel switched-capacitor inverter for solar PV systems Save
- Design and Modelling of Novel Asymmetric Multilevel Switched-Capacitor Inverter for PV Systems Save
- Design of switched capacitor converter-based wireless power transfer using mutual inductance for micropower applications Save
- Multi-pass friction stir processing of pure copper: A pathway to superior strength and corrosion resistance Save
- A Novel Asymmetric 17 L Switched Capacitor Inverter without Power Conversion Circuits Save
- A stochastic variance reduction gradient-based GSO-ANFIS optimized method for maximum power extraction of proton exchange membrane fuel cell Save
- Design and Analysis of Variable Voltage SMPS Device Using Bluetooth Controller for Mode Selection Save
- Dual mode variable voltage converter configuration using single topology: design and analysis Save
- Fibonacci Series Based 21 Level Switched Capacitor Inverter Topology Using Hysteresis Band Save
- Modelling farm-based electric vehicles on charging systems for power distribution networks with dynamic grid interactions Save