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Multiharmonic Small-Signal Modeling of Low-Power PWM DC-DC Converters

机译:低功耗PWM DC-DC转换器多谐波小信号建模

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摘要

Small-signal models of pulse-width modulation (PWM) converters are widely used for analyzing stability and play an important role in converter design and control. However, existing small-signal models either are based on averaged DC behaviors, and hence are unable to capture frequency responses that are faster than the switching frequency, or greatly approximate these high-frequency responses. We address the severe limitations of the existing models by proposing a multiharmonic model that provides a complete small-signal characterization of both DC averages and high-order harmonic responses. The proposed model captures important high-frequency overshoots and undershoots of the converter response, which are otherwise unaccounted for by the existing techniques. In two converter examples, the proposed model corrects the misleading results of the existing models by providing truthful characterization of the overall converter AC response and offers important guidance for converter design and closed-loop control.
机译:脉冲宽度调制(PWM)转换器的小信号模型广泛用于分析稳定性并在转换器设计和控制中发挥重要作用。然而,现有的小信号模型是基于平均的直流行为,因此不能捕获比开关频率快的频率响应,或者大致近似这些高频响应。我们通过提出一种多谐波模型来解决现有模型的严重限制,该模型提供了直流平均值和高阶谐波响应的完整小信号表征。所提出的模型捕获了转换器响应的重要高频过冲和下潮,否则通过现有技术否则是未占用的。在两个转换器示例中,所提出的模型通过提供总体转换器交流响应的真实表征来校正现有模型的误导性结果,并为转换器设计和闭环控制提供了重要指导。

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