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A New Isolated AC-DC Power Converter Topology with Reduced Number of Switches for High-Input Voltage and High-Output Current Applications

机译:用于高输入电压和高输出电流应用的新型隔离式AC-DC电源转换器拓扑,减少了开关数量

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The main objective of this research work is to develop a new low-cost isolated three-level ac-dc power converter topology that is suitable for applications having high input ac voltages and high output currents; for example, hybrid (ac-dc) microgrids or offshore wind farms. Existing three-level converter topologies convert ac power to dc power while maintaining requirements set by international standards for power conversion. These types of converters have significant conduction losses due to high currents in the low-voltage side and high costs, particularly when using several devices in series or in parallel to achieve high-voltage and high-power levels. The proposed topology replaces the conventional three-level converters in the low-voltage side by only two controlled devices and four diodes while still maintaining the basic functionality of a three-level converter. Simulation results for a 87.5-kW case study and experimental results on a 250-W scale-down prototype demonstrate the feasibility of the proposed ideas.
机译:这项研究工作的主要目的是开发一种新的低成本隔离式三电平AC-DC电源转换器拓扑,适用于具有高输入AC电压和高输出电流的应用。例如,混合(ac-dc)微电网或海上风电场。现有的三级转换器拓扑结构将交流电转换为直流电,同时保持国际标准对电源转换的要求。由于低压侧的大电流和高成本,这些类型的转换器具有显着的传导损耗,尤其是在串联或并联使用多个设备以实现高压和大功率时。所提出的拓扑仅用两个受控设备和四个二极管代替了低压侧的常规三电平转换器,同时仍保持了三电平转换器的基本功能。 87.5 kW案例研究的仿真结果和250 W缩小原型的实验结果证明了所提出想法的可行性。

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