使用可变电感提高动力系DC-DC转换器的性能

IF 1.9 4区 工程技术 Q3 ENGINEERING, ELECTRICAL & ELECTRONIC
Mebrahtom W. Beraki, João Pedro F. Trovão, Marina S. Perdigão
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引用次数: 1

摘要

采用电流控制磁器件可变电感器(VI)提高了动力总成DC-DC转换器的性能。可变电感器由两组绕组组成,主绕组和辅助绕组。辅助绕组用于在大范围的负载变化中调节磁芯的磁导率。为了调节磁芯的饱和水平,避免功率电感的过饱和运行,需要适当的辅助绕组电流。为此,提出了一种简单而动态的策略来估计VI的辅助绕组电流。通过大规模基于VI的动力总成DC-DC变换器的仿真研究验证了所提出的方法。结果表明,该方法可以连续调节功率电感铁芯的磁性能,将动力系统DC-DC变换器的性能提高13.70%,并将开关器件的应力降低17.87%。此外,电源电流变化减少了6.73%,从而减少了对储能系统的压力。
本文章由计算机程序翻译,如有差异,请以英文原文为准。

Performance enhancement of powertrain DC–DC converter using variable inductor

Performance enhancement of powertrain DC–DC converter using variable inductor

Performance enhancement of a powertrain DC–DC converter is provided using a current-controlled magnetic device, the variable inductor (VI). The VI is composed of two groups of windings, main and auxiliary. The auxiliary winding is used to regulate the permeability of the magnetic core over a wide range of load variations. To regulate the saturation level of the magnetic core and avoid postsaturation operation of the power inductor, an appropriate level of auxiliary winding current is needed. To this end, a simple and dynamic strategy is proposed to estimate the auxiliary winding currents of the VI. The proposed approach is validated using simulation studies of a large-scale VI-based powertrain DC–DC converter. The results reveal the significance of the proposed approach in continuous regulation of the magnetic property of the power inductor core, enhancing powertrain DC–DC converter performance by up to 13.70% and reducing stress on switching devices by 17.87%. Furthermore, energy source current variation is reduced by 6.73%, leading to reduced stress on energy storage systems.

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来源期刊
CiteScore
5.80
自引率
4.30%
发文量
18
审稿时长
29 weeks
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