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Small-Signal Modeling and Analysis of the Double-Input Buckboost Converter

机译:双输入额额倒塌转换器的小信号建模与分析

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Multi-input dc-dc power electronic converters have been gaining popularity in applications such as renewable energy sources and electric-drive vehicles due to their reduced part count and flexibility in integration. In this paper, the small-signal model of the double-input buckboost converter is developed. The model is then used for a multiple loop feedback design. Considering a photovoltaic-battery hybrid power system, the control objectives are threefold. These include output voltage regulation, constant power demand from the PV panel, and load accommodation by the battery pack. Two feedback compensation networks are designed based on the developed small-signal model. It is also demonstrated that the two inputs of the double-input buckboost topology can be controlled independently. This offers greater flexibility for the compensator design. The results of the time domain analysis are consistent with those of the theoretical model.
机译:多输入DC-DC电力电子转换器在可再生能源和电动车辆等应用中获得了普及,因为它们的零件数量减少和集成灵活性。在本文中,开发了双输入额定电压转换器的小信号模型。然后,该模型用于多环反馈设计。考虑到光伏电池混合动力系统,控制目标是三倍。这些包括输出电压调节,来自PV面板的恒定功率需求,并通过电池组负载。基于开发的小信号模型设计了两个反馈补偿网络。还表明,可以独立地控制双输入额定磁盘拓扑的两个输入。这为补偿器设计提供了更大的灵活性。时域分析的结果与理论模型的结果一致。

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