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Application of the magnetic ear for flux balancing of a 160kW/20kHz DC-DC converter transformer

机译:160kW / 20KHz DC-DC转换器变压器磁耳磁耳的应用

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The non-ideal behavior of semiconductor devices used in power electronic circuits exciting a transformer can cause DC voltage components applied to the transformer terminals. This DC voltage in turn generates a DC current and/or DC flux density component only limited by the parasitic resistance of the windings and semiconductors. The biased flux density operation deteriorates the performance of the converter, since the core can be driven into saturation, generating higher currents and hence higher temperatures in the circuit. In order to overcome this problem, the previously reported “Magnetic Ear”, a non-invasive flux density transducer concept, is used in this paper. The design, placement and all implementation issues for this flux density transducer are described. For verifying the theoretical considerations, the transducer is used to perform a closed loop control over the DC component of the flux density in the 166kW/20kHz transformer, therefore ensuring its unbiased magnetic flux density operation.
机译:用于励磁器的电力电子电路中使用的半导体器件的非理想行为可以使施加到变压器端子的DC电压分量。该DC电压又产生了仅受绕组和半导体的寄生电阻限制的DC电流和/或DC磁通密度分量。偏置磁通密度操作劣化转换器的性能,因为核心可以被驱动成饱和,产生更高的电流并因此在电路中产生更高的温度。为了克服这个问题,先前报道的“磁耳朵”,非侵入式磁通密度换能器概念,本文使用。描述了该助焊密度换能器的设计,放置和所有实现问题。为了验证理论考虑,换能器用于在166kW / 20KHz变压器中的通量密度的DC分量上执行闭环控制,因此确保其无偏的磁通密度操作。

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