access icon free Hybrid modular converter for DC microgrids

A novel non-isolated high step-up high-power DC–DC converter based on coupled inductor (CI) and voltage multiplier cell (VMC) for renewable energy DC microgrids is presented in this study. A hybrid combination of three-phase interleaved boost converter with three CIs is chosen to reduce the current ripple at the input and meet the high-power requirement. Three VMCs connected at the secondary side of the CIs serve as gain extension cells. The voltage stress experienced by the switches is only a fraction of the output voltage as the gain extension is mainly achieved at the secondary side of CIs. Practical results obtained from the proposed converter which operated from a 60 V input and provided an output voltage of 1.1 kV while delivering 3 kW of output power prove the correctness of the design details and validate the proposed concept.

Inspec keywords: DC-DC power convertors; distributed power generation

Other keywords: VMC; renewable energy DC microgrids; hybrid modular converter; voltage 60 V; voltage stress; power 3 kW; coupled inductor; current ripple reduction; three-phase interleaved boost converter; voltage 1.1 kV; voltage multiplier cell; nonisolated high-step-up high-power DC-DC converter

Subjects: Distributed power generation; DC-DC power convertors

http://iet.metastore.ingenta.com/content/journals/10.1049/iet-pel.2016.1034
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content/journals/10.1049/iet-pel.2016.1034
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