自由运行的电流模式控制变换器的频率稳定和同步

R. Redl, N. Sokal
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引用次数: 12

摘要

具有自由运行电流模式控制(滞后,恒定“关”时间或恒定“开”时间)的电源转换器可以是频率稳定的,也可以同步到参考频率。这些可以通过前馈、反馈或锁相技术来实现。迟滞控制是通过改变电流的迟滞量来控制频率。使用恒定的“关闭”时间或恒定的“打开”时间控制,分别通过改变“关闭”时间或“打开”时间来控制频率。我们考虑了三种类型的自由运行电流模式控制的所有可能的频率稳定和同步方法,与三种基本类型的功率转换器(降压,升压和降压-升压)一起使用。我们给出了最重要的组合的分析和实用的设计信息,以及具有恒定“关断”时间控制和前馈稳频的降压变换器的实验数据。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Frequency stabilization and synchronization of free-running current-mode-controlled converters
Power converters with free-running current-mode control (hysteretic, constant-“off”- time, or constant-“on”-time) can be frequency-stabilized or can be synchronized to a reference frequency. Those can by accomplished by feedforward, feedback, or phase-locking techniques. With hysteretic control, the frequency is controlled by varying the current hysteresis. With constant-“off”-time or constant-“on”-time control, the frequency is controlled by varying the “off” time or the “on” time, respectively. We consider all possible methods of frequency stabilization and synchronization for the three types of free-running current-mode control, used with the three basic types of power converters (buck, boost, and buck-boost). We give analyses and practical design information for the most-important combinations, and experimental data for a buck converter with constant-“off”-time control and feed-forward frequency stabilization.
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