使用温伯格拓扑的直流到直流变换器建模技术

P. Kornetzky, Z. Moussaoui, I. Batarseh, S. Hawasly, C. Kennedy
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引用次数: 7

摘要

在本文中,作者提出了一种使用改进的Weinberg拓扑的dc - dc功率转换器单元(DDCU)的简化分析和设计。DDCU还增加了电源变压器N/sub s//N/sub p/=m的匝比与电感变压器N/sub LS//N/sub L/= N的匝比不同的复杂性。采用状态空间平均法对降阶温伯格功率变换器进行建模。该模型可用于驱动电流模式和电压模式控制电源变换器的频域、瞬态和稳态响应。通过状态空间平均,DDCU等效电路可以得到所有相关的功率级传递函数。为了验证稳态和动态模型的结果,对给定的设计实例进行了PSPICE仿真。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Modeling technique for DC to DC converters using Weinberg topology
In this paper, the authors present a simplified analysis and design of a DC-to-DC power converter unit (DDCU) using the improved Weinberg topology. The DDCU has the added complication that the turns ratio of the power transformer N/sub s//N/sub p/=m is different than the turns ratio of the inductor transformer N/sub LS//N/sub L/=n. The state-space averaging approach is used for modeling the reduced order Weinberg power converter. This model can be used to drive frequency domain, transient and steady state responses for current mode and voltage mode control power converters. Through state-space averaging, the DDCU equivalent circuit can be used to obtain all the relevant power stage transfer functions. To verify the steady state and dynamic models results, a PSPICE simulation for a given design example is presented.
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