Abstract

For high-gain applications, mainly Microgrid, an extendable DC-DC converter is studied in this paper. Active-passive inductor cells are used in the converter structure described. It makes the topology expandable and in lower duty cycles provides a high gain quality. The model benefits also include lower voltage on switches, high efficiency, and minimum output voltage ripple. The converter is designed for 200 W and tested in both continuous and discontinuous operating modes for high-gain applications. The analysis includes theoretical calculations as well as simulation tests to infer topology and its advantage in high-gain applications.

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