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Observer-Pattern Modeling and Slow-Scale Bifurcation Analysis of Two-Stage Boost Inverters

机译:两阶段增压逆变器的观察者模式建模与慢速分岔分析

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This paper deals with modeling and bifurcation analysis of two-stage Boost inverters. Since the effect of the nonlinear interactions between source-stage converter and load-stage inverter causes the "hidden" second-harmonic current at the input of the downstream H-bridge inverter, an observer-pattern modeling method is proposed by removing time variance originating from both fundamental frequency and hidden second harmonics in the derived averaged equations. Based on the proposed observer-pattern model, the underlying mechanism of slow-scale instability behavior is uncovered with the help of eigenvalue analysis method. Then eigenvalue sensitivity analysis is used to select some key system parameters of two-stage Boost inverter, and some behavior boundaries are given to provide some design-oriented information for optimizing the circuit. Finally, these theoretical results are verified by numerical simulations and circuit experiment.
机译:本文涉及两阶段增压逆变器的建模和分岔分析。 由于源级转换器和负载级逆变器之间的非线性相互作用的影响使得下游H桥逆变器的输入处的“隐藏”的第二谐波电流,通过去除时间方差来提出观察者模式建模方法 从派生平均方程中的基本频率和隐藏的第二谐波。 基于所提出的观察者模式模型,借助于特征值分析方法发现了慢尺度不稳定行为的潜在机制。 然后,特征值灵敏度分析用于选择两级升压逆变器的一些关键系统参数,并且给出了一些行为边界以提供一些设计的信息以优化电路。 最后,通过数值模拟和电路实验验证了这些理论结果。

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