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Practical switch based state-space modeling of DC-DC converters with all parasitics

机译:具有寄生效应的基于开关的实用DC-DC转换器状态空间建模

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摘要

All parasitics such as switch conduction voltages, conduction resistances, switching times, and ESRs of capacitors are counted in a proposed DC-DC power convertor state-space modeling based method on nonideal switching functions. An equivalent simplified model is derived from the complex circuit with parasitics. The modeling procedure is shown for the buck-boost converter as the general converter among the buck, boost, and buck-boost converters. The pole frequency, DC voltage gain, and efficiency are analyzed and verified by experiments that show good agreement with theory. The procedures for determining the gain margin of the controller, the turn ratio of an isolation transformer, the optimum duty factor, and the switching frequency are given for an example flyback converter.
机译:拟议的基于非理想开关功能的DC-DC功率转换器状态空间模型中,计算了所有寄生效应,例如开关的导通电压,导通电阻,开关时间和电容器的ESR。从具有寄生效应的复杂电路中得出等效的简化模型。降压-升压转换器的建模过程显示为降压,升压和降压-升压转换器中的通用转换器。通过与理论相吻合的实验对极点频率,直流电压增益和效率进行了分析和验证。对于示例反激式转换器,给出了确定控制器的增益裕度,隔离变压器的匝数比,最佳占空比和开关频率的过程。

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