$V^2I_c$ control provides very fast dynamic performance to the Buck converter both under load steps and under voltage reference steps'/> Accurate Analysis of Subharmonic Oscillations of <formula formulatype='inline'><tex Notation='TeX'>$V^2$</tex></formula> and <formula formulatype='inline'><tex Notation='TeX'>$V^2I_c$</tex></formula> Controls Applied to Buck Converter
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Accurate Analysis of Subharmonic Oscillations of $V^2$ and $V^2I_c$ Controls Applied to Buck Converter

机译:精确分析 $ V ^ 2 $ $ V ^ 2I_c $ 控件应用于Buck转换器

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$V^2I_c$ control provides very fast dynamic performance to the Buck converter both under load steps and under voltage reference steps. However, the design of this control is complex since it is prone to subharmonic oscillations and several parameters affect the stability of the system. This paper derives and validates a very accurate modeling and stability analysis of a closed-loop $V^2I_c$ control using the Floquet theory. This allows the derivation of sensitivity analysis to design a robust converter. The proposed methodology is validated on a 5-MHz Buck converter. The work is also extended to $V^2$ control using the same methodology, showing high accuracy and robustness. The paper also demonstrates, on the $V^2$ control, that even a low bandwidth-linear controller can affect the stability of a ripple-based control.
机译: $ V ^ 2I_c $ 控件在负载步长和参考电压步长下都为Buck转换器提供了非常快的动态性能。但是,此控制的设计很复杂,因为它易于产生次谐波振荡,并且一些参数会影响系统的稳定性。本文使用Floquet导出并验证了闭环 $ V ^ 2I_c $ 控件的非常精确的建模和稳定性分析。理论。这样就可以进行灵敏度分析,从而设计出一款稳健的转换器。所提出的方法在5MHz降压转换器上得到了验证。这项工作还扩展到使用相同方法的 $ V ^ 2 $ 控件,显示了很高的准确性和鲁棒性。该论文还证明,在 $ V ^ 2 $ 控件上,即使是低带宽线性控制器也会影响稳定性。基于纹波的控制。

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