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Slow-Scale Instability of Single-Stage Power-Factor-Correction Power Supplies

机译:单级功率因数校正电源的慢速不稳定性

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This paper reports slow-scale instability in a single-stage power-factor-correction (PFC) power supply, which is a popular design solution for low power applications. The circuit employs a cascade configuration of a boost converter and a forward converter, which share an active switch and operate in discontinuous-conduction mode (DCM), to provide input PFC and tight output regulation. Main results are given by “exact” cycle-by-cycle circuit simulations. The effect of the slow-scale instability on the attainable power factor is illustrated in terms of total harmonic distortion which can be found by taking the fast Fourier transform of the input current. The slow-scale instability usually manifests itself as local oscillations within a line cycle. Based on the critical condition of DCM for the buck converter, the underlying mechanism of such instability is further investigated. It has been found that border collision is the underlying cause of the phenomenon. Moreover, it has been shown that the border collision observed here is effectively a nonsmooth Neimark–Sacker bifurcation. Finally, experimental results are presented for verification purposes.
机译:本文报告了单级功率因数校正(PFC)电源中的慢尺度不稳定性,这是针对低功率应用的流行设计解决方案。该电路采用升压转换器和正激转换器的级联配置,它们共享一个有源开关并以不连续导通模式(DCM)工作,以提供输入PFC和严格的输出调节。主要结果通过“精确”逐周期电路仿真给出。慢速尺度不稳定性对可获得的功率因数的影响用总谐波失真来说明,该总谐波失真可以通过对输入电流进行快速傅立叶变换来发现。慢尺度不稳定性通常表现为线路周期内的局部振荡。基于降压转换器的DCM临界条件,进一步研究了这种不稳定性的潜在机制。已经发现边界碰撞是该现象的根本原因。此外,已经表明,此处观察到的边界碰撞实际上是不光滑的Neimark-Sacker分叉。最后,提供实验结果以供验证。

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