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A Dynamic Model of Switched-Capacitor Power Converters

机译:开关电容器电源转换器的动态模型

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Switched-capacitor (SC) converters are frequently used for low-power applications that require little or no output regulation. Previous work has established static SC converter models, essentially composed of an ideal transformer (with turns ratio determined by the topology) and an output resistance that varies with component choices, switching frequency, and duty ratio. In this paper, the static model is expanded to include the dynamic response to the input voltage and output current changes. The dynamic model is particularly important in systems that experience large output power transients, such as low-power systems that enter and exit sleep modes. For applications that are only concerned with input–output behavior, a reduced-order model that neglects internal dynamics is derived. The dynamic model is validated with both simulations and experimental results.
机译:开关电容器(SC)转换器通常用于要求很少或不需要输出调节的低功率应用。先前的工作已经建立了静态SC转换器模型,该模型主要由理想变压器(匝数比由拓扑决定)和输出电阻组成,该输出电阻随组件选择,开关频率和占空比而变化。在本文中,静态模型被扩展为包括对输入电压和输出电流变化的动态响应。动态模型在经历较大输出功率瞬变的系统(例如进入和退出睡眠模式的低功率系统)中尤其重要。对于仅关注输入输出行为的应用程序,可以推导出忽略内部动力学的降阶模型。通过仿真和实验结果验证了该动态模型。

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