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首页> 外文期刊>Power Electronics, IET >Effect of intermediate capacitance on slow-scale instability of Cuk power factor correction converter operating in discontinuous capacitor voltage mode
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Effect of intermediate capacitance on slow-scale instability of Cuk power factor correction converter operating in discontinuous capacitor voltage mode

机译:中间电容对在不连续电容器电压模式下工作的Cuk功率因数校正转换器的慢尺度不稳定性的影响

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摘要

Due to features of near-unity power factor, soft turn-off switching and low switch current stress, Cuk power factor correction (PFC) converter operating in discontinuous capacitor voltage mode (DCVM) has attracted much attention. However, it is found that with the increase of intermediate capacitance, slow-scale instability occurs in voltage mode control (VMC) DCVM Cuk PFC converter. In this study, a simplified model for VMC DCVM Cuk PFC converter is established, upon which the effect of intermediate capacitance on the slow-scale instability and the corresponding bifurcation behaviours are studied by using harmonic balance method and Floquet theory. Furthermore, the stability boundaries in terms of the intermediate capacitance under different load resistance and input voltage are given, which is helpful for parameter design of VMC DCVM Cuk PFC converter. Finally, numerical simulations and experimental results are provided to verify the analysis results.
机译:由于具有接近统一的功率因数,软关断开关和低开关电流应力的特点,以不连续电容器电压模式(DCVM)工作的Cuk功率因数校正(PFC)转换器引起了广泛关注。但是,发现随着中间电容的增加,在电压模式控制(VMC)DCVM Cuk PFC转换器中会发生慢规模的不稳定性。本研究建立了VMC DCVM Cuk PFC转换器的简化模型,在此模型中,使用谐波平衡法和Floquet理论研究了中间电容对慢尺度不稳定性和相应分叉行为的影响。此外,给出了在不同负载电阻和输入电压下中间电容的稳定性边界,这有助于VMC DCVM Cuk PFC转换器的参数设计。最后,通过数值模拟和实验结果验证了分析结果。

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