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Transient DC Bias and Current Impact Effects of High-Frequency-Isolated Bidirectional DC–DC Converter in Practice

机译:高频隔离双向DC-DC转换器的瞬态直流偏置和电流影响效果

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摘要

This paper presents the transient dc bias and the current impact effects of a high-frequency-isolated bidirectional dc–dc converter (IBDC) in practice because the theoretical premise in the steady process cannot be satisfied strictly in the transient process. The transient characterizations of IBDC under the steady phase-shift (SPS) strategy are analyzed comprehensively, and the corresponding model is modified for all of the transient processes in the same and different power flows. Due to the existence of the dc bias, the current model in the transient process is different from the traditional model in the steady process, and the models are different with different operating conditions. On this basis, a transient phase-shift (TPS) strategy is proposed to improve the transient performance of the SPS strategy. Unlike in the SPS strategy, the voltages of the transformer are symmetrical in the TPS strategy, which causes that the voltage–time product of the transformer voltages is zero during a switching period, then eliminates the transient dc bias and improves the current impact, and further increases the response speed of the transient process effectively. Finally, comprehensive experiments verify the theoretical analysis.
机译:本文介绍了瞬态直流偏置和高频隔离双向dc-dc转换器(IBDC)在实践中的电流影响,因为在瞬态过程中不能严格满足稳态过程的理论前提。全面分析了稳态相移(SPS)策略下IBDC的瞬态特性,并针对相同和不同功率流下的所有瞬态过程修改了相应的模型。由于存在直流偏置,因此瞬态过程中的电流模型与稳定过程中的传统模型不同,并且在不同的工作条件下,模型也有所不同。在此基础上,提出了一种瞬态相移(TPS)策略来提高SPS策略的瞬态性能。与SPS策略不同,TPS策略中的变压器电压是对称的,这导致在开关期间变压器电压的电压-时间乘积为零,从而消除了瞬态直流偏置并改善了电流影响,并且进一步有效地提高了过渡过程的响应速度。最后,综合实验验证了理论分析。

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