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Extracting the frequency response of switching DC-DC converters in CCM and DCM from time-domain simulations

机译:从时域仿真中提取CCM和DCM中的开关DC-DC转换器的频率响应

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Determining if a feedback loop is stable is crucial, and in the case of switching dc-dc converters, also considerably involved because some of the signals across the ac signal path are large signal and nonlinear. Today, designers rely on averaged and linearized small-signal models to approximate loop dynamics. This method is appropriate for well-tested dc-dc supplies like the buck and boost but less reliable and more difficult to apply to emerging non-conventional switchers used, for example, in energy harvesters. Overdesigning these circuits to overcome the uncertainty is often unacceptable because accuracy and efficiency, which are critical, normally suffer as a result. Extracting loop dynamics from actual time-domain waveforms is more accurate because, in averaging waveforms around a narrow bias point, conventional methods eliminate important loop information and constrain the model to small-signal variations — this paper proposes a way to extract small- and large-signal frequency response from time-domain simulations. The results from buck and boost converters under voltage- and current-mode control operating in CCM and DCM match theory well.
机译:确定反馈回路是否稳定是至关重要的,并且在切换DC-DC转换器的情况下,这也很重要,因为交流信号路径上的某些信号是大信号并且是非线性的。如今,设计人员依靠平均和线性化的小信号模型来近似环路动态。此方法适用于经过测试的DC-DC电源,例如降压和升压,但可靠性较差,并且更难应用于新兴的非常规开关,例如在能量收集器中。过度设计这些电路以克服不确定性通常是不可接受的,因为关键的精度和效率通常会因此而受损。从实际的时域波形中提取环路动力学更为准确,因为常规方法在对窄偏置点附近的波形求平均值时会消除重要的环路信息,并将模型约束在小信号变化范围内—本文提出了一种提取大小信号的方法时域仿真的信号频率响应。在CCM和DCM中运行的电压和电流模式控制下的降压和升压转换器的结果与理论相符。

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