Research themesResearch Domain

Power Electronics

DC-DC converters, inverter design, grid-connected converters, PWM strategies, protection, and converter loss reduction.

Research Story

Converter hardware connected to intelligent command generation

SiC DC-DC converter hardware response

The power-electronics story brings together SiC-based DC-DC converter validation and GPR-SVM assisted SEPIC converter control. The figures are deliberately different: one is a measured oscilloscope response from hardware validation, while the other is a system-level workflow showing how PV-side measurements are converted into a duty-cycle command.

The SiC converter figure demonstrates that the research is not stopping at simulation. Output voltage, switching-related behavior, ripple, and transient response are observed on hardware so that converter design choices can be connected to measurable behavior. The SEPIC workflow adds the control-intelligence layer: PV voltage, current, irradiance, and temperature form the feature set; GPR estimates the reference power; SVM estimates a bounded duty command; and PWM interpretation drives converter-level validation.

GPR-SVM assisted PV-to-SEPIC workflow

This is the practical power-electronics identity of the site: topology selection, semiconductor choice, PWM logic, converter testing, and AI-assisted duty-cycle generation are treated as one engineering chain. It is directly relevant to prototype review, converter design, PV-fed charging, and embedded control translation.

Possible next chapters
  • Bidirectional converters
  • Grid-connected inverter validation
  • Prototype-level power-stage review
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