10kv硅基双有源桥式变换器的磁链平衡策略

Zihan Gao, Pengfei Yao, Haiguo Li, Fred Wang
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引用次数: 1

摘要

在双有源桥式(DAB)变换器中,由于电参数和调制不匹配以及负载或控制瞬变,变压器磁通不平衡是一个关键问题。与低压DAB变换器相比,中压DAB变换器由于工作电压和绝缘要求高,其不平衡问题可能会造成更为严重的问题,并且变得更加难以处理。本文提出了一种中压(MV) DAB变换器的磁链平衡策略,包括带铁氧体间隙的变压器设计、基于电流谐波的不平衡检测以及磁链平衡控制方案。利用所提出的铁氧体间隙,产生了非线性磁化电流及其模型。然后,通过分析电流谐波,可以检测磁通不平衡水平,从而控制磁通不平衡。测试结果验证了该方法在中压DAB变换器中的有效性。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
A Flux Balancing Strategy for 10-kV SiC-Based Dual-Active-Bridge Converter
The transformer flux unbalance in dual-active-bridge (DAB) converters is a critical issue due to the electrical parameter and modulation mismatch, and load or control transients. Compared to low voltage DAB converters, the unbalance problem in medium voltage DAB converters may cause more severe problem, and become more difficult to deal with, because of the high operating voltage and insulation requirement. In this paper, a flux balancing strategy for a medium voltage (MV) DAB converter is proposed, including the transformer design with ferrite gap, current harmonic-based unbalance detection, as well as the flux balancing control scheme. With the proposed ferrite gap, nonlinear magnetizing current and its modeling are induced. Then, by analyzing the current harmonics, the flux unbalance level can be detected, and hence controlled. Test results have verified the proposed method in a MV DAB converter.
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