Abstract
This paper presents a comprehensive analytical comparison of the impedance-source-based dc-dc and dc-ac converters in terms of the passive component count and size, semiconductor stress, and range of input voltage variation. The conventional solution with a boost converter was considered as a reference value. The main criterion of the comprehensive comparison was the energy stored in the passive elements, which was considered both under a constant and predefined high frequency current ripple in the inductors and the voltage ripple across the capacitors. Main impedance-source converters with or without a transformer and with or without inductor coupling were analyzed. Dc-dc and dc-ac applications were considered. Selective simulation results along with experimental verification are shown. The conclusions provide a selection guide of impedance-source networks for different applications taking into account its advantages and disadvantages.
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Husev, O., Shults, T., Vinnikov, D., Roncero-Clemente, C., Romero-Cadaval, E., & Chub, A. (2019). Comprehensive comparative analysis of impedance-source networks for DC and AC application. Electronics (Switzerland), 8(4). https://doi.org/10.3390/electronics8040405
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