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首页> 外文期刊>Industrial Electronics, IEEE Transactions on >Improving the Stability of Cascaded DC/DC Converter Systems via Shaping the Input Impedance of the Load Converter With a Parallel or Series Virtual Impedance
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Improving the Stability of Cascaded DC/DC Converter Systems via Shaping the Input Impedance of the Load Converter With a Parallel or Series Virtual Impedance

机译:通过使用并联或串联虚拟阻抗调整负载转换器的输入阻抗来提高级联DC / DC转换器系统的稳定性

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摘要

Interactions between individually designed power subsystems in a cascaded system may cause instability. This paper proposes an approach, which connects a virtual impedance in parallel or series with the input impedance of the load converter so that the magnitude or phase of the load converter's input impedance is modified in a small range of frequency, to solve the instability problem of a cascaded system. The requirements on the parallel virtual impedance (PVI) and series virtual impedance (SVI) are derived, and the control strategies to implement the PVI and SVI are proposed. The comparison and general design procedure of the PVI and SVI control strategies are also discussed. Finally, considering the worst stability problem that often occurs at the system whose source converter is an filter, two cascaded systems consisting of a source converter with an input filter and a load converter, which is either a buck converter or a boost converter, are fabricated and tested to validate the effectiveness of the proposed control methods.
机译:级联系统中单独设计的电源子系统之间的相互作用可能会导致不稳定。本文提出了一种方法,该方法将虚拟阻抗与负载转换器的输入阻抗并联或串联,以便在较小的频率范围内修改负载转换器的输入阻抗的幅度或相位,以解决功率放大器的不稳定性问题。级联系统。推导了对并联虚拟阻抗(PVI)和串联虚拟阻抗(SVI)的要求,并提出了实现PVI和SVI的控制策略。还讨论了PVI和SVI控制策略的比较和一般设计过程。最后,考虑到在源转换器为滤波器的系统中经常发生的最差的稳定性问题,制造了两个级联系统,该系统由具有输入滤波器的源转换器和负载转换器组成,负载转换器可以是降压转换器或升压转换器。并进行了测试,以验证所提出的控制方法的有效性。

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