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A Single-Switch High Step-Up DC-DC Converter Based on Integrating Coupled Inductor and Voltage Multiplier Cell for Renewable Energy Applications

机译:基于耦合电感器和倍增器单元的单开关高升压DC-DC转换器,用于可再生能源应用

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In this paper, a high step-up, single switch, non-isolated, coupled inductor based DC-DC converter is proposed for sustainable energy applications. A high voltage gain is achieved by applying a coupled inductor and two voltage multiplier cells in the structure of proposed converter. The passive clamp that is connected to the main switch recovers the coupled inductor leakage inductance energy and limits the voltage spike on the power switch. Thus, low on-state resistance of the power switch can be adapted to decrease the conduction loss. The features such as coupled inductor with a low turn ratio, high voltage conversion ratio in suitable duty cycles, , high efficiency, recycled energy of leakage inductor and low voltage stress on the power switches and diodes make the presented converter appropriate for sustainable energy applications. The steady state analysis and voltage stress of the power switch and diodes of the converter are expressed in detail. Finally, simulation results in PSIM software have been presented to confirm the performance of the suggested structure.
机译:本文针对可持续能源应用,提出了一种高升压,单开关,非隔离,耦合电感的DC-DC转换器。通过在所提出的转换器的结构中应用耦合的电感器和两个电压倍增器单元,可以获得高电压增益。连接到主开关的无源钳位可回收耦合的电感器漏感能量,并限制电源开关上的电压尖峰。因此,功率开关的低接通状态电阻可以适于减小传导损耗。诸如具有低匝数比的耦合电感器,在合适的占空比下具有高电压转换比的特性,高效率,漏电感器的循环能量以及功率开关和二极管上的低压应力,使得该转换器适合于可持续能源应用。详细表示了转换器的功率开关和二极管的稳态分析和电压应力。最后,在PSIM软件中给出了仿真结果,以确认所建议结构的性能。

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