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Switching Frequency Determination of DC–DC Converters With Hysteretic Control

机译:具有滞后控制的DC-DC转换器的开关频率确定

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Hysteretic control provides unique advantages in dc-dc converter applications but it is less popular than other types of control because the switching frequency depends on the operating point, the feedback ripple, and the component parasitics. Furthermore, it is difficult to predict the frequency due to the complex interaction of those factors. This paper proposes harmonic balance analysis to systematically determine the switching frequency of the buck and boost-like converters with hysteretic current control, and extends the method to buck converters with hysteretic voltage control. The analysis includes the most important second-order effects (feedback ripple, component parasitics, a second output capacitor, and switching delays). For the less complex cases the switching frequency is expressed in closed form, and for the more complex cases the paper proposes a graphical solution. The predictions are verified by simulations and, for the buck converter with hysteretic current control, by experiments. The derived results are useful for designing a converter with predictable switching frequency, and can also be employed during the design process of a converter with synchronized or stabilized frequency. Given an arbitrary control scheme or circuit variation, the switching frequency can be readily obtained by following the proposed approach.
机译:迟滞控制在DC-DC转换器应用中具有独特的优势,但它不如其他类型的控制流行,因为开关频率取决于工作点,反馈纹波和元件寄生效应。此外,由于这些因素的复杂相互作用,很难预测频率。本文提出谐波平衡分析,以系统地确定具有滞回电流控制的降压型和升压型转换器的开关频率,并将该方法扩展到具有滞后电压控制的降压型转换器。分析包括最重要的二阶效应(反馈纹波,组件寄生,第二输出电容器和开关延迟)。对于不太复杂的情况,开关频率以封闭形式表示,对于更复杂的情况,本文提出了一种图形解决方案。通过仿真验证了预测结果,对于具有滞回电流控制的降压转换器,通过实验验证了预测结果。得出的结果对于设计具有可预测开关频率的转换器很有用,也可以在具有同步或稳定频率的转换器的设计过程中使用。给定任意的控制方案或电路变化,通过遵循所提出的方法可以容易地获得开关频率。

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