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Performance Analysis of a Peak-Current Mode Control with Compensation Ramp for a Boost-Flyback Power Converter

机译:升压电力转换器补偿斜坡峰电流模式控制的性能分析

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摘要

High voltage gain power converters are very important in photovoltaic applications mainly due to the low output voltage of photovoltaic arrays. This kind of power converters includes three or more semiconductor devices and four or more energy storage elements, making the dynamical analysis of the controlled system more difficult. In this paper, the boost-flyback power converter is controlled by peak-current mode with compensation ramp. The closed-loop analysis is performed to guarantee operation conditions such that a period-1 orbit is attained. The converter is considered as a piecewise linear system, and the closed-loop stability is determined by using the monodromy matrix, obtained by the composition of the saltation matrixes with the solutions of the dynamical equations in the linear intervals. The largest eigenvalue of the monodromy matrix gives the stability of the period-1 orbit, and a deep analysis using bifurcation diagrams let us reach a conclusion about the loss of the stability, which is experimentally verified. To avoid overcompensation effects, the minimum value required by the compensation ramp is obtained, and the minimum and maximum values of the load resistance are found too. The system has a good transient response under disturbances in the load and in the input voltage.
机译:高压增益功率转换器在光伏应用中非常重要,主要是由于光伏阵列的低输出电压。这种功率转换器包括三个或更多个半导体器件和四个或更多个能量存储元件,使得受控系统的动力学分析更加困难。在本文中,升压反激功率转换器由具有补偿斜坡的峰电流模式控制。执行闭环分析以保证运行条件,使得达到终止轨道。转换器被认为是分段线性系统,并且通过使用盐化矩阵的组成以线性间隔的溶液的溶液获得的盐化矩阵的组成而确定闭环稳定性。单十字矩阵的最大特征值给出了时期-1轨道的稳定性,并且使用分叉图的深度分析让我们得出关于稳定性损失的结论,这是实验验证的。为避免过度补偿效果,获得补偿斜坡所需的最小值,也发现了负载电阻的最小值和最大值。该系统在负载中的干扰和输入电压下具有良好的瞬态响应。

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