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Theoretical and experimental investigation of bidirectional Hopf bifurcations in cascade DC-DC buck converters

机译:级联DC-DC降压转换器中双向Hopf分叉的理论和实验研究

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This paper deals with two types of bidirectional Hopf bifurcation phenomena in two-stage cascade DC-DC buck converter, which is a popular design solution for obtaining larger conversion rates in distributed power systems (DPS). By means of "exact" cycle-by-cycle numerical simulations, it is found that two types of bidirectional Hopf bifurcations that never occur in standalone buck converter are observed under the variations of some particular circuit parameters. Based on the derived averaged model, theoretical analysis is performed to identify the two types of bidirectional bifurcations by judging in what way the eigenvalue loci of the Jacobian move, and further to reveal their underlying mechanisms. In addition, some behavior boundaries are given in parameter space, and some rules are proposed to avoid the occurrence of the bidirectional Hopf bifurcations. Finally, experimental results are presented for verification purposes.
机译:本文研究两级级联DC-DC降压转换器中的两种双向Hopf分叉现象,这是一种在分布式电源系统(DPS)中获得更大转换率的流行设计解决方案。通过“精确的”逐周期数值模拟,发现在某些特定电路参数的变化下,观察到两种在独立降压转换器中从未发生过的双向Hopf分叉。基于导出的平均模型,通过判断Jacobian特征值轨迹的移动方式并进一步揭示其潜在机理,进行了理论分析,以识别两种类型的双向分叉。此外,在参数空间中给出了一些行为边界,并提出了一些规则来避免出现双向Hopf分叉。最后,提供实验结果以供验证。

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