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High-Efficiency DAB Converter Using Switching Sequences and Burst Mode

机译:使用开关序列和突发模式的高效DAB转换器

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摘要

Dual active bridge converters enable bidirectional power flow in buck and boost operating modes. This paper presents an advanced switching sequence and burst-mode strategy to balance conduction, switching, and magnetic losses under light, medium, and heavy loading conditions, leading to improved operating efficiency. The implementation of the switching sequence employs the natural state-plane trajectories of the converter and contributes to higher efficiency and the ability to perform burst mode. The proposed switching sequences improve the overall efficiency of the converter by enabling soft switching and adjusting the frequency to match the minimum RMS transformer current in the full operating range. Furthermore, it incorporates a fully controlled burst-mode switching sequence for light loading conditions to further extend the efficiency gains. As a result, maximum efficiency is obtained by taking advantage of all the possible switching structures of the converter. The analysis provides insight into the natural trajectories of the converter, which produce soft-switching transitions and enable the converter structures to achieve the target operating point directly. Simulation and experimental results are presented to validate the benefits of the switching sequence and illustrate the burst-mode operation.
机译:双路有源桥式转换器可在降压和升压工作模式下实现双向功率流。本文提出了一种先进的开关顺序和突发模式策略,以平衡轻,中和重负载条件下的传导,开关和磁损耗,从而提高了工作效率。开关序列的实现采用了转换器的自然状态平面轨迹,并有助于提高效率和执行突发模式的能力。所提出的开关序列通过实现软开关和调整频率以匹配整个工作范围内的最小RMS变压器电流,提高了转换器的整体效率。此外,它结合了针对轻负载条件的完全受控的突发模式切换序列,以进一步扩展效率增益。结果,通过利用转换器的所有可能的开关结构来获得最大效率。通过分析,可以深入了解转换器的自然轨迹,这些轨迹会产生软开关过渡,并使转换器结构直接达到目标工作点。给出了仿真和实验结果,以验证切换序列的好处并说明了突发模式操作。

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