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Fast Transient Boundary Control and Steady-State Operation of the Dual Active Bridge Converter Using the Natural Switching Surface

机译:使用自然开关表面的双有源桥变换器的快速瞬态边界控制和稳态操作

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摘要

This paper presents a boundary control scheme for dual active bridge (DAB) converters using the natural switching surface (NSS). The implementation of a curved switching surface for DAB converters is a new area of research undertaken in this paper. The proposed technique brings the benefit of unprecedented dynamic performance, already developed for nonisolated topologies (e.g., buck and boost), to this more complex isolated topology. The analysis provides insight into the natural trajectories of the DAB converters and creates an accurate framework in the normalized geometrical domain. As a result, the physical limits of the converter under study become evident. Those physical limits are exploited by employing the NSS to obtain fast transient response under start-up, sudden load transients, and reference change. In addition, fixed-frequency operation is one of the key features of the proposed control scheme, which allows optimizing the design of the high-frequency transformer. Experimental results are presented to validate the NSS for DAB converters and illustrate the benefits of the normalization technique.
机译:本文提出了一种使用自然开关表面(NSS)的双有源桥(DAB)转换器的边界控制方案。 DAB转换器的弧形开关表面的实现是本文研究的新领域。所提出的技术将为非隔离拓扑(例如降压和升压)已经开发的空前的动态性能的好处带到了这种更复杂的隔离拓扑中。该分析提供了对DAB转换器自然轨迹的洞察力,并在归一化几何域中创建了一个准确的框架。结果,所研究的转换器的物理极限变得明显。通过采用NSS在启动,突然的负载瞬变和基准变化下获得快速瞬态响应,可以利用这些物理极限。此外,固定频率操作是所提出的控制方案的关键特征之一,它可以优化高频变压器的设计。给出实验结果以验证DAB转换器的NSS并说明归一化技术的好处。

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