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Dual Active Bridge - Magnetic Component Configurations for High Boost Application

机译:双有源电桥-用于高升压应用的磁性组件配置

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This paper deals with the design of magnetic components used in selected Dual Active Bridge (DAB) converter configurations for high boost (isolatedon-isolated) Photovoltaic (PV) application. A set of topologies, namely, i) Single DAB converter with input filter, ii) DAB converter embedded with input 2-inductors boost stage, iii) input-output cascaded in DAB converter are compared to investigate the high frequency (HF) transformer design, overall weight, and volume of the magnetic components, semiconductor voltage/current stress level. In a high-frequency transformer, design number of parallel wire and number of layers play a crucial role in low voltage (LV) side to limit the copper losses due to high-frequency effects. A comparison is done by splitting the transformer into a number of reduced rating transformer with LV winding in parallel and HV winding in series. Such transformer configuration has reduced the number of layers in LV side, low HF losses and simple construction. The performance of the converter with the grid is highlighted. Simulation results from 1.5 kW power converters are presented.
机译:本文讨论了用于高升压(隔离/非隔离)光伏(PV)应用的选定双有源桥(DAB)转换器配置中使用的磁性组件的设计。一组拓扑,即:i)具有输入滤波器的单DAB转换器,ii)嵌入有输入2电感升压级的DAB转换器,iii)在DAB转换器中级联的输入-输出进行比较,以研究高频(HF)变压器设计,总重量和磁性元件的体积,半导体电压/电流应力水平。在高频变压器中,设计并联线数和层数在低压(LV)侧起着至关重要的作用,以限制由于高频效应而引起的铜损。通过将变压器分成多个额定值降低的变压器进行比较,这些变压器的LV绕组并联,HV绕组串联。这种变压器配置减少了LV侧的层数,降低了HF损耗,并简化了结构。带有网格的转换器的性能突出显示。给出了1.5 kW电源转换器的仿真结果。

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