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Bilinear discrete-time modeling for enhanced stability prediction and digital control design of switching power converters

机译:用于增强稳定性预测的双线性离散时间建模和开关电源转换器的数字控制设计

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This paper presents a new bilinear discrete-time modeling method for switching power converter circuits. The method utilizes a new approximation of the matrix exponential involved in the exact discrete-time models. Compared to the conventional bilinear discrete-time models or to the continuous-time averaged models, the new bilinear models provide a means for more reliable and accurate stability and transient response prediction. They also lend themselves better to digital control design than the exact discrete-time models due to their simplicity. The modeling method is validated by several example converters, for which traditional averaged models and conventional bilinear discrete-time models fail to predict the stability characteristics correctly.
机译:本文提出了一种用于开关电源转换器电路的新的双线性离散时间建模方法。该方法利用了精确离散时间模型中涉及的矩阵指数的新近似值。与传统的双线性离散时间模型或连续时间平均模型相比,新的双线性模型为更可靠,更准确的稳定性和瞬态响应预测提供了一种方法。由于它们的简单性,它们也比精确的离散时间模型更适合数字控制设计。通过几个示例转换器对建模方法进行了验证,传统的平均模型和传统的双线性离散时间模型无法正确预测稳定性特征。

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