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Switched Capacitor Converter Based Multiport Converter Integrating Bidirectional PWM and Series-Resonant Converters for Standalone Photovoltaic Systems

机译:基于开关电容器转换器的多端口转换器,集成了双向PWM和串联谐振转换器,用于独立光伏系统

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Photovoltaic (PV) systems containing a rechargeable battery as an energy buffer require multiple dc–dc converters for PV panel control and battery regulation, and hence, they are prone to be complex and costly. To simplify the system by reducing the number of converters, this paper proposes the nonisolated switched capacitor converter (SCC)-based multiport converter (SC-MPC) for standalone PV systems. The proposed SC-MPC can be derived by integrating a bidirectional pulsewidth modulation (PWM) converter, series-resonant converter (SRC), and an SCC with sharing switches. PWM and pulse frequency modulation (PFM) controls are employed for the PWM converter and SRC, respectively, to regulate either a battery voltage, output voltage, or input power from a PV panel, depending on power balance among the input, battery, and load. The 150-W prototype was built for an experimental verification, and the results demonstrated the output voltage could be regulated independently on the battery voltage or input port of PV panels.
机译:包含可充电电池作为能量缓冲器的光伏(PV)系统需要多个DC-DC转换器来控制PV面板和调节电池,因此,它们容易变得复杂且成本高昂。为了通过减少转换器的数量来简化系统,本文提出了用于独立光伏系统的基于非隔离式开关电容器转换器(SCC)的多端口转换器(SC-MPC)。可以通过集成双向脉宽调制(PWM)转换器,串联谐振转换器(SRC)和带有共享开关的SCC来推导提出的SC-MPC。 PWM转换器和SRC分别采用PWM和脉冲频率调制(PFM)控制,根据输入,电​​池和负载之间的功率平衡来调节电池电压,输出电压或来自PV面板的输入功率。该150 W原型是为进行实验验证而构建的,结果表明输出电压可以独立于电池电压或PV面板的输入端口进行调节。

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