The analyzed topologies of the three-phase inverters were configured to supply a three-phase inductive load (10-Ω resistance in series with 5-mH inductance) from a low-voltage dc supply; an input dc voltage or Photovoltaic Panel of 100 V was assumed for the simulation, whereas 20 V was used in the experimental design.
The comparative simulation analysis highlights the potential of these advanced inverter designs for transformerless photovoltaic systems and other renewable energy applications.
Upon examination, the simulation results reveal that all three inverter configurations successfully generate high-quality sinusoidal output currents, which are essential for maintaining grid compatibility and load efficiency.
Among the options analyzed, the Split-Source Inverter (SSI) is the simplest to modulate, as it requires only the duty cycles for each phase. In contrast, both the standard DC–DC–AC converter and the quasi-Z-source inverter (q-ZSI) necessitate a greater number of modulating signals and comparators.
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