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- W4377987077 abstract "In this paper, four asymmetric multi-input high gain DC–DC converter topologies are designed, simulated, and compared. Each multi-input converter (MIC) topology comprises of two individual high gain DC–DC converters (HGC) which are excited from separate DC sources and have different power ratings. They employ interleaving technique with coupled inductors (CI) and voltage gain extension mechanisms like the voltage-lift (VL) technique, diode–capacitor multipliers (DCM), and voltage multiplier cells (VMCs). Resultantly, two HGCs yield a voltage gain of 10, while the remaining HGC provides a voltage gain of 13.33. Each MIC topology is synthesized by connecting the individual outputs obtained from the HGCs in parallel using ORing diodes. They aid in sharing the current delivered by the individual HGC to the load. The three individual HGCs are connected in four different combinations. Thus, four MIC topologies are obtained. Simulation results are obtained for all the MIC topologies using PSIM. Based on the simulation results, the current shared by the MIC topologies which employ ORing diodes are validated and compared. The advantageous features of the proposed asymmetric MIC topologies are their ability to (i) yield high-voltage gain of 10, (ii) draw smooth and ripple-free input current, and (iii) share the required load demand by using ORing diodes alone and without using complicated current control techniques." @default.
- W4377987077 created "2023-05-25" @default.
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- W4377987077 date "2023-01-01" @default.
- W4377987077 modified "2023-09-26" @default.
- W4377987077 title "Design and Simulation of Coupled Inductor-Based Asymmetric High Gain Multi-input DC–DC Converters" @default.
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- W4377987077 doi "https://doi.org/10.1007/978-981-99-0915-5_6" @default.
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