A Novel Asymmetric Duty Modulation Control of Dual-Active-Bridge for LVDC Applications

Xinyu Cui, Zhi Zheng, Jiachen Tian, Ruixin Xu, Yichu Li, F. Zhuo, Feng Wang
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引用次数: 4

Abstract

As a traditional dual-active-bridge (DAB) converter control strategy, phase-shift (PS) control has some defects, including the large root-mean-square (RMS)value of current stress when the voltageson both sides mismatch. Therefore, asymmetric duty modulation (ADM) control is introduced, which can effectively reduce the (RMS) current and improve the efficiency of DAB. However, the influence of the backflow power is seldom considered in the research of ADM control. Subsequently, in this paper, compared with the conventional ADM control, a novel ADM control scheme is proposed, where the backflow power grows down substantially. In the meanwhile, there exists tremendous RMS value of current stress in DAB when operating under EPS control. Aforementioned modified ADM control can retard the RMS value of current stress gradually. Finally, the effectiveness of the proposed control scheme is verified by simulation results.
LVDC双有源桥的非对称占空调制控制
作为传统的双有源桥(DAB)变换器控制策略,相移(PS)控制存在一些缺陷,包括当两端电压不匹配时电流应力的均方根(RMS)值较大。因此,引入非对称占空调制(ADM)控制,可以有效地降低(RMS)电流,提高DAB的效率。然而,在ADM控制研究中很少考虑回流功率的影响。随后,与传统的ADM控制相比,本文提出了一种新的ADM控制方案,该方案的回流功率大大降低。同时,在EPS控制下,DAB的电流应力存在较大的均方根值。上述改良的ADM控制可以逐渐延缓当前应力的均方根值。最后,通过仿真结果验证了所提控制方案的有效性。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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