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Computationally efficient models for simulation of non-ideal DC-DC converters operating in continuous and discontinuous conduction modes

机译:计算有效模型,用于仿真在连续和不连续导通模式下运行的非理想DC-DC转换器

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摘要

This paper discusses dynamic modeling of non-isolated DC-DC converters (buck, boost and buck-boost) under continuous and discontinuous modes of operation. Three types of models are presented for each converter, namely, switching model, average model and harmonic model. These models include significant non-idealities of the converters. The switching model gives the instantaneous currents and voltages of the converter. The average model provides the ripple-free currents and voltages, averaged over a switching cycle. The harmonic model gives the peak to peak values of ripple in currents and voltages. The validity of all these models is established by comparing the simulation results with the experimental results from laboratory prototypes, at different steady state and transient conditions. Simulation based on a combination of average and harmonic models is shown to provide all relevant information as obtained from the switching model, while consuming less computation time than the latter.
机译:本文讨论了在连续和不连续工作模式下非隔离式DC-DC转换器(降压,升压和降压-升压)的动态建模。针对每个转换器提出了三种类型的模型,即开关模型,平均模型和谐波模型。这些模型包括转换器的明显非理想性。开关模型给出了转换器的瞬时电流和电压。平均模型提供在开关周期内平均的无纹波电流和电压。谐波模型给出了电流和电压中纹波的峰峰值。通过将仿真结果与实验室原型在不同稳态和瞬态条件下的实验结果进行比较,可以确定所有这些模型的有效性。示出了基于平均模型和谐波模型的组合的仿真,以提供从切换模型获得的所有相关信息,同时比后者消耗更少的计算时间。

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