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Reactive current optmisation for high power dual active bridge DC/DC converter

机译:大功率双有源桥式DC / DC转换器的无功电流优化

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This paper presents a new approach for minimizing reactive power for the dual active bridge DC/DC converter for high power applications. The chosen topology comprises of two active bridges with internal medium frequency transformer. Assuming the converter operate in steady-state, both bridges are analyzed with an AC equivalent circuit where only the fundamental component of the voltages and currents are considered. The phase shift angle between the two AC voltages can manipulate the power flow of the converter and the phase shift on the individual bridge branches control the AC voltage magnitude are realized in the steady-state analysis. It is possible to achieve zero reactive power based on the control strategies and proper selection of the transformer parameters. The transformer design steps based on zero reactive power conditions are also provided. Finally, a 3 MW 4/40 kV dual active bridge DC/DC converter is modeled in SABER platform to confirm the converter performance from the theoretical analysis.
机译:本文提出了一种新方法,可将用于高功率应用的双有源桥式DC / DC转换器的无功功率降至最低。选择的拓扑包括两个带内部中频变压器的有源电桥。假设转换器在稳态下工作,则使用交流等效电路分析两个桥,其中仅考虑电压和电流的基本分量。两个交流电压之间的相移角可以控制转换器的功率流,并在稳态分析中实现控制交流电压幅度的各个桥臂支路上的相移。根据控制策略和正确选择变压器参数,可以实现零无功功率。还提供了基于零无功功率条件的变压器设计步骤。最后,在SABER平台中对3 MW 4/40 kV双有源桥DC / DC转换器进行建模,以从理论分析中确认转换器的性能。

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