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Control Method for Avoiding Transformer Saturation in High-Power Three-Phase Dual-Active Bridge DC–DC Converters

机译:大功率三相双有源桥式DC-DC转换器中避免变压器饱和的控制方法

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摘要

The classic top to down structure of electrical infrastructure is changing due to the extensive spread of renewable energy sources which are connected to medium-voltage and low-voltage grids. Especially for medium-voltage direct-current grids, the three-phase dual-active bridge (DAB) dc-dc converter is one of the most promising converter topologies, as it features bidirectional power flow and galvanic isolation at highest efficiency. Unwanted saturation of the transformer of this converter can occur, particularly for multimegawatt converters with highly efficient, low-loss transformers. The saturation leads to additional core losses, elevated voltage stress at the windings, and increased magnetostriction of the transformer core, which can result in undesired acoustic emissions. The following article presents a feedback control and modulation method that controls the DAB converter such that saturation of the transformer is avoided. The chosen approach evaluates the star-point voltage of the transformer to determine the dc component of the magnetizing current, thereby avoiding the need for expensive high-precision current sensors. The control method is analytically derived and verified by simulation. Experiments carried out using a 5MW medium-voltage three-phase DAB converter prototype verify the presented modulation method.
机译:由于连接到中压和低压电网的可再生能源的广泛传播,电气基础设施的典型的从上到下的结构正在发生变化。尤其对于中压直流电网,三相双有源桥(DAB)DC-DC转换器是最有前途的转换器拓扑之一,因为它具有双向功率流和最高效率的电流隔离。该转换器的变压器可能发生不必要的饱和,特别是对于具有高效,低损耗变压器的兆瓦级转换器。饱和会导致额外的铁芯损耗,绕组上的电压应力增加以及变压器铁芯的磁致伸缩增加,这可能会导致不希望的声发射。下面的文章介绍了一种反馈控制和调制方法,该方法控制DAB转换器,从而避免了变压器的饱和。选择的方法评估变压器的星点电压以确定励磁电流的直流分量,从而避免了使用昂贵的高精度电流传感器的需求。通过分析得出控制方法,并通过仿真进行验证。使用5MW中压三相DAB转换器原型进行的实验验证了所提出的调制方法。

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