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#x0022;Magnetic Ear#x0022;-based balancing of magnetic flux in high power medium frequency dual active bridge converter transformer cores

机译:"磁性耳朵"在高功率介质频率双极式桥接器变压器核心中进行了磁通量的平衡

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Semiconductor switches posses non-ideal behavior which, in case of isolated DC-DC converters, can generate DC voltage components in the voltage applied to the transformer. This DC voltage component is translated into a DC flux density component in the transformer core, increasing the risk of driving the core into saturation. In this paper, a novel non-invasive flux density measurement principle, called the "Magnetic Ear", based on sharing of magnetic path between the main and an auxiliary core is proposed. The active compensation of the transformer DC magnetization level using this transducer is experimentally verified. Additionally, a classification of the previously reported magnetic flux measurement and balancing concepts is performed.
机译:半导体开关可能是非理想行为,即在隔离的DC-DC转换器的情况下,可以在施加到变压器的电压中产生直流电压分量。 该直流电压分量在变压器芯中转换成DC磁通密度分量,增加将核心驱动成饱和的风险。 本文采用了一种新的非侵入性助焊剂密度测量原理,称为"提出了基于主和辅助芯之间的磁路分享的磁耳" 使用该换能器的变压器直流磁化水平的主动补偿是通过该换能器进行实验验证的。 另外,执行先前报道的磁通量测量和平衡概念的分类。

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