Design consideration of efficinecy improvement in three phase dual active bridge converter for LVDC application

Hyun-Jun Choi, Jun-Young Lee, Young-pyo Cho, Jeehoon Jung
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引用次数: 2

Abstract

To increase the efficiency of the three-phase dual active bridge (DAB) converter for low voltage direct current (LVDC) system, the design consideration based on performance analysis is proposed. The three phase DAB converters are widely used in high-power applications requiring bidirectional power conversion. This is because the three phase DAB converter has not only capability of zero voltage switching (ZVS), but also a lower conduction loss than a single-phase DAB converter. However, for high voltage/high power applications such as LVDC system, IGBTs are mostly used as active components, fading the one of merits of 3-phase DAB converters, ZVS, causing high switching losses. In addition, in a 3-phase DAB converter, the conduction losses increase due to the high circulating current under high load conditions. In this paper, the effective design consideration of coupling inductance is proposed based on the operation principle of the three phase DAB converter. By designing the coupling inductance, the IGBT turn-off current and the phase RMS current can be reduced to overcome the above disadvantages. Experimental results demonstrate the practical feasibility and the effectiveness of the proposed design method of three phase DAB converter through the 5 kW prototype.
LVDC用三相双有源桥式变换器效率提高的设计考虑
为了提高低压直流(LVDC)系统中三相双有源桥(DAB)变换器的效率,提出了基于性能分析的设计思路。三相DAB变换器广泛应用于需要双向功率转换的大功率应用中。这是因为三相DAB变换器不仅具有零电压开关(ZVS)的能力,而且比单相DAB变换器具有更低的导通损耗。然而,对于高压/大功率应用,如LVDC系统,igbt大多用作有源元件,削弱了三相DAB变换器ZVS的优点之一,导致高开关损耗。此外,在三相DAB变换器中,由于高负载条件下的大循环电流,导通损耗增加。本文根据三相DAB变换器的工作原理,提出了耦合电感的有效设计考虑。通过设计耦合电感,可以减小IGBT的关断电流和相位均方根电流,克服上述缺点。实验结果通过5kw样机验证了所提出的三相DAB变换器设计方法的可行性和有效性。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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