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PWM- and PFM-controlled switched capacitor converter-based multiport converter integrating voltage equalizer for photovoltaic systems

机译:基于PWM和PFM控制的基于开关电容器转换器的多端口转换器,集成了光伏系统的电压均衡器

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Photovoltaic (PV) systems consist of multiple dc-dc converters, including a front-end converter for PV string control, a bidirectional converter for battery regulation, and voltage equalizer to preclude partial-shading issues, and hence they are prone to be complex and costly. To cope with this issue, this paper proposes the PWM- and PFM-controlled switched capacitor converter (SCC)-based multiport converter (MPC) integrating voltage equalizer. The proposed MPC can be derived by integrating a bidirectional PWM converter, series-resonant converter (SRC), and SCC. The PWM converter and SRC regulate battery and load voltages, respectively, while the SCC plays a role of the voltage equalization. Not only is the system as a whole dramatically simplified but also the circuit element count is significantly reduced thanks to the integration. The 150-W prototype for three PV modules was built for verification. The experimental results demonstrated the extractable maximum power from PV modules was significantly improved by the SCC, while the battery and load voltages were individually regulated by the PWM and PFM controls, respectively.
机译:光伏(PV)系统由多个DC-DC转换器组成,包括用于PV串控制的前端转换器,用于电池调节的双向转换器以及防止部分阴影问题的电压均衡器,因此它们容易变得复杂且昂贵。为了解决这个问题,本文提出了基于PWM和PFM控制的开关电容器转换器(SCC)的多端口转换器(MPC)集成电压均衡器。可以通过集成双向PWM转换器,串联谐振转换器(SRC)和SCC来得出建议的MPC。 PWM转换器和SRC分别调节电池电压和负载电压,而SCC起到电压均衡的作用。由于集成,不仅大大简化了整个系统,而且大大减少了电路元件的数量。用于验证的150W原型用于三个光伏模块。实验结果表明,通过SCC可以显着提高PV模块的可提取最大功率,而分别通过PWM和PFM控件分别调节电池和负载电压。

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