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Investigation of a Non-isolated Reduced Redundant Power Processing DC/DC Converter for High-Power High Step-Up Applications

机译:用于高功率高升压应用的非隔离式减少冗余功率处理DC / DC转换器的研究

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摘要

In this paper, a nonisolated high step-up dc/dc converter, belonging to the family of reduced redundant power processing converters (R2P2), is investigated for high-power applications. The selection of this topology as the most suitable for such applications among those belonging to the R2P2 family is justified. Emphasis is given on the theoretical analysis of the real step-up voltage ratio of the converter, and voltage and current stresses under continuous and discontinuous conduction modes of operation, taking into account the nonideality of the topology components, namely the parasitic resistances of semiconductor devices and inductors and the voltage drop of diodes. The theoretical analysis and the behavior of the selected converter are experimentally validated through a 2 kW prototype. Moreover, the overall efficiency of the chosen converter is experimentally investigated for various step-up voltage ratios and for a high-power range, considering a waste heat recovery system for a maritime application.
机译:本文针对高功率应用,研究了属于减少冗余功率处理转换器(R2P2)系列的非隔离式高升压dc / dc转换器。在属于R2P2家族的应用中选择这种拓扑最适合此类应用是合理的。考虑到拓扑组件的非理想性,即半导体器件的寄生电阻,着重于对转换器的实际升压比,以及在连续和不连续导电模式下的电压和电流应力的理论分析和电感器以及二极管的压降。通过2 kW的原型实验验证了所选转换器的理论分析和性能。此外,考虑到海上应用的废热回收系统,对各种升压比和大功率范围的实验研究了所选转换器的整体效率。

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