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Minimum Time Control for Multiphase Buck Converter: Analysis and Application

机译:多相降压转换器的最小时间控制:分析与应用

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摘要

The combination of minimum time control and multiphase converter is a favorable option for dc–dc converters in applications where output voltage variation is required, such as RF amplifiers and dynamic voltage scaling in microprocessors, due to their advantage of fast dynamic response. In this paper, an improved minimum time control approach for multiphase buck converter that is based on charge balance technique, aiming at fast output voltage transition is presented. Compared with the traditional method, the proposed control takes into account the phase delay and current ripple in each phase. Therefore, by investigating the behavior of multiphase converter during voltage transition, it resolves the problem of current unbalance after the transient, which can lead to long settling time of the output voltage. The restriction of this control is that the output voltage that the converter can provide is related to the number of the phases, because only the duty cycles at which the multiphase converter has total ripple cancellation are used in this approach. The model of the proposed control is introduced, and the design constraints of the buck converter's filter for this control are discussed. In order to prove the concept, a four-phase buck converter is implemented and the experimental results that validate the proposed control method are presented. The application of this control to RF envelope tracking is also presented in this paper.
机译:最小时间控制和多相转换器的结合是要求输出电压变化的应用中DC-DC转换器的理想选择,例如RF放大器和微处理器中的动态电压缩放,这是因为它们具有快速动态响应的优势。本文提出了一种改进的基于电荷平衡技术的多相降压转换器最小时间控制方法,旨在实现快速的输出电压转换。与传统方法相比,所提出的控制考虑了每相的相位延迟和电流纹波。因此,通过研究多相转换器在电压过渡期间的行为,解决了瞬态后电流不平衡的问题,这可能导致输出电压的建立时间较长。该控制的限制在于,转换器可以提供的输出电压与相数有关,因为在这种方法中仅使用多相转换器具有完全纹波消除的占空比。介绍了所提出的控制模型,并讨论了降压转换器滤波器对此控制的设计约束。为了证明该概念,实现了一个四相降压转换器,并给出了验证所提出的控制方法的实验结果。本文还介绍了这种控制在射频包络跟踪中的应用。

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