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Ashoka K. S. Bhat

Ashoka K. S. Bhat

D-Index & Metrics

Electronics and Electrical Engineering

D-Index
35
Citations
5805
World Ranking
5511
National Ranking
245

Research.com Recognitions

  • 1998 - IEEE Fellow For contributions to the analysis, design, and applications of resonant converters

Overview

Ashoka K. S. Bhat is affiliated with the University of Victoria in Canada and conducts research primarily in the field of Engineering. Their work largely focuses on Electrical and Electronic Engineering and Control and Systems Engineering. The scientist has contributed to the advancement of topics including Advanced DC-DC Converters, Microgrid Control and Optimization, and Multilevel Inverters and Converters.

The research output includes publications in recognized venues such as the 2021 IEEE 2nd International Conference on Smart Technologies for Power, Energy and Control (STPEC). A notable paper is titled "Partially Isolated Three-Port Quasi-Switched-Boost Integrated LCL-T Converter for DC Micro-Grids" published in 2021 at this conference, which has received citations within the research community.

  • Partially Isolated Three-Port Quasi-Switched-Boost Integrated LCL-T Converter for DC Micro-Grids, 2021, 2021 IEEE 2nd International Conference on Smart Technologies for Power, Energy and Control (STPEC)

Ashoka K. S. Bhat has collaborated with co-authors such as Praneydeep Rastogi, contributing collectively to their research outputs. Frequent publication venues include:

  • 2021 IEEE 2nd International Conference on Smart Technologies for Power, Energy and Control (STPEC)

Their awarded recognition includes being named an IEEE Fellow in 1998 for contributions to the analysis, design, and applications of resonant converters, marking an acknowledgment by a major professional organization in the field.

Best Publications

  • Analysis and Design of High-Frequency Isolated Dual-Bridge Series Resonant DC/DC Converter

    Xiaodong Li;Ashoka K S Bhat

  • Analysis and design of LCL-type series resonant converter

    A.K.S. Bhat

  • Analysis, Design and Experimental Results of Wide Range ZVS Active-Clamped L-L Type Current-Fed DC/DC Converter for Fuel Cells to Utility Interface

    Akshay K. Rathore;Ashoka K. S. Bhat;Ramesh Oruganti

  • An Output-Power-Control Strategy for a Three-Phase PWM Rectifier Under Unbalanced Supply Conditions

    Bo Yin;R. Oruganti;S.K. Panda;A.K.S. Bhat

  • A Comparison of Soft-Switched DC-DC Converters for Fuel Cell to Utility Interface Application

    Akshay K. Rathore;Ashoka K. S. Bhat;Ramesh Oruganti

  • Fixed-frequency PWM series-parallel resonant converter

    A.K.S. Bhat

  • Analysis and Design of a High-Frequency Resonant Converter Using LCC-Type Commutation

    Ashoka K. S. Bhat;S. B. Dewan

  • Analysis and design of a series-parallel resonant converter

    A.K.S. Bhat

  • Analysis and design of a series-parallel resonant converter with capacitive output filter

    A.K.S. Bhat

  • A Simple Single-Input–Single-Output (SISO) Model for a Three-Phase PWM Rectifier

    Bo Yin;R. Oruganti;S.K. Panda;A.K.S. Bhat

  • A Comparison of Soft-Switched DC-to-DC Converters for Electrolyzer Application

    D. S. Gautam;A. K. S. Bhat

  • A generalized steady-state analysis of resonant converters using two-port model and Fourier-series approach

    A.K.S. Bhat

  • Resonant Power Converters

    Ashoka K. S. Bhat

  • Zero-Voltage Transition Flyback Inverter for Small Scale Photovoltaic Power System

    N. Kasa;T. Iida;A.K.S. Bhat

  • Analysis and design of a modified series resonant converter

    A.K.S. Bhat

  • A unified approach for the steady-state analysis of resonant converters

    A.K.S. Bhat

  • Analysis and design of a three-phase LCC-type resonant converter

    A.K.S. Bhat;R.L. Zheng

  • A generalized approach for the steady-state analysis of resonant inverters

    A.K.S. Bhat;S.B. Dewan

  • A soft-switched full-bridge single-stage AC-to-DC converter with low-line-current harmonic distortion

    A.K.S. Bhat;R. Venkatraman

  • Analysis and design of a fixed-frequency LCL-type series-resonant converter with capacitive output filter

    A.K.S. Bhat

  • Operation of a Bidirectional Series-Resonant Converter With Minimized Tank Current and Wide ZVS Range

    Song Hu;Xiaodong Li;Ashoka K. S. Bhat

Frequent Co-Authors

Akshay Kumar Rathore
Akshay Kumar Rathore Concordia University
Xiaodong Li
Xiaodong Li University of Virginia
Sanjib Kumar Panda
Sanjib Kumar Panda National University of Singapore
Vivek Agarwal
Vivek Agarwal Indian Institute of Technology Bombay
Vinod Khadkikar
Vinod Khadkikar Khalifa University

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