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Dynamical Modeling and Characterization of Peak-Current-Controlled Superbuck Converter

机译:峰值电流控制的Superbuck转换器的动力学建模和表征

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摘要

The fourth-order converter known as superbuck is often used to interface the solar arrays into the rest of the power system due to the continuous input current it provides. Peak-current-mode (PCM) control is applied. The small-signal models of such a converter do not exist in public domain literature and its dynamical features are not known. The paper introduces the dynamical modeling based on consistent methods. The characterization shows that the PCM-controlled superbuck converter may have similar features characteristic to the conventional buck converter such as high input-voltage-noise attenuation, effectively first-order output dynamics, and high insensitivity to source interactions, when the inductor-current feedback is properly compensated. The converter is, however, more susceptible to the input-filter instability due the shape of the ideal input impedance than the conventional buck converter. Experimental evidence is provided based on a 440-kHz converter.
机译:由于其提供的连续输入电流,被称为超级降压的四阶转换器通常用于将太阳能电池阵列连接到电力系统的其余部分。应用了峰值电流模式(PCM)控制。这样的转换器的小信号模型在公共领域的文献中不存在,并且其动态特性是未知的。本文介绍了基于一致方法的动力学建模。该特性表明,PCM控制的超级降压​​转换器可能具有与传统降压转换器相似的特性,例如,当电感器电流反馈时,高输入电压噪声衰减,有效的一阶输出动力学以及对源极交互作用的不敏感性得到适当补偿。但是,由于理想输入阻抗的形状,该转换器比传统的降压转换器更容易受到输入滤波器不稳定的影响。提供了基于440 kHz转换器的实验证据。

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