A Loss Measurement Approach of Power Magnetic Components under Practical Power Electronics Conditions

He Xu, Jiazhan Dong, Chushan Li, Yuanhong Wang, Ying Mei, Jingkui Shi, Menglian Zhao
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引用次数: 1

Abstract

With the increasing operating frequency, magnetic components and their design is considered as a significant part to achieve high power density and high efficiency in today's power electronics converters. Accurate losses of these components under practical excitation conditions are still difficult to determine. Therefore, it's crucial to directly measure the loss of these components for loss estimation and further optimization. In this paper, a loss measurement approach of magnetic power components is proposed. To emulate many power electronics relevant waveforms, the excitation source is constructed in a full-bridge topology with SiC MOSFET modules. To improve measuring accuracy, the selection of current probes is discussed then. Moreover, a time delay correction method ensuring precise compensation is implemented in this paper. Finally, to verify the measurement results, an additional dual-inductor experiment is proposed.
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实用电力电子条件下功率磁性元件损耗测量方法
随着工作频率的不断提高,磁性元件及其设计已成为当今电力电子变换器实现高功率密度和高效率的重要组成部分。这些部件在实际激励条件下的准确损耗仍然难以确定。因此,直接测量这些组件的损耗对损耗估计和进一步优化至关重要。本文提出了一种磁功率元件损耗测量方法。为了模拟许多电力电子相关波形,励磁源被构建在一个全桥拓扑与SiC MOSFET模块。为了提高测量精度,讨论了电流探头的选择。此外,本文还实现了一种保证精确补偿的时延校正方法。最后,为了验证测量结果,提出了一个附加的双电感实验。
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CiteScore
1.20
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0.00%
发文量
8
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