Personal profile

Research areas

  • Ph.D. in Energy and Industrial Electronics
  •  Design, analysis, control, optimization, and implementation of high-power and high-frequency power 
    electronics converters for photovoltaic generation systems (Standalone, and on grid systems), on-board 
    charger (OBC) converters, and plasma generation. This includes magnetic device design and integration, as 
    well as the design and implementation of linear and non-linear phase-shift and duty-cycle control schemes. 
    Work also involves dynamic modeling and simulation of high-order converters, and building and 
    programming of hardware prototypes]
    My research includes: Volume reduction of Isolated Multilevel Inverters by proposing electrolytic 
    capacitorless topologies, Frequency independent power decoupling circuits for MMC based variable-speed 
    motor drives for enhanced system reliability, Reduced component count Single-Stage ac/dc converters for 
    OBC applications, Efficiency optimization through RMS current minimization and extended ZVS of isolated 
    dc/ac converters, 6.78MHz- 13.56MHz power electronic circuit design and implementation, 400 kHz and 
    high voltage pulse generator for plasma generation for semiconductors manufacturing, High frequency dc/dc 
    and dc/ac Resonant converters, Isolated and non-isolated dc/dc converters, Grid current shaping using 
    adaptive phase-shift controller to overcome the problem of thermal imbalance between high-side and lowside switches, Sliding mode controller, THD reduction, Power factor correction, Magnetic integration, ZVS 
    three-level AC/AC converters.

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