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Common-Ground Transformerless Inverter with Virtual DC Bus Concept for Single-Phase PV Systems

机译:具有虚拟直流总线概念的共用变压器逆变,用于单相PV系统

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This study investigates a single-phase common-ground transformerless inverter topology for grid-connected photovoltaic (PV) systems. The inverter shares a common ground with the grid and utilizes minimal components for power conversion, making it suitable for use as an integrated microinverter for solar PV modules. The peak of the ac output voltage is the same as the input DC voltage, and a virtual DC bus capacitor is used to provide power during the negative cycle of the inverter. A simple unipolar sinusoidal pulse-width modulation technique is used to modulate the inverter minimizing switching loss, output filter requirements, and output current ripple. Moreover, a double-charging process is employed to minimize the inrush charging current of the virtual DC bus capacitor. Various operating states along with the design guidelines for choosing the constituent components are presented. Finally, some simulation and experimental results are presented for a 1kW prototype to validate the proposed topology.
机译:本研究研究了网格连接的光伏(PV)系统的单相公共变压器逆变器拓扑。逆变器与电网共享共同点,采用最小部件进行电源转换,使其适用于用于太阳能光伏模块的集成微逆变器。交流输出电压的峰值与输入直流电压相同,并且虚拟直流总线电容器用于在逆变器的负周期期间提供功率。简单的单极正弦脉冲宽度调制技术用于调制变频器最小化开关损耗,输出滤波器要求和输出电流纹波。此外,采用双充电过程来最小化虚拟直流总线电容器的浪涌充电电流。提出了各种操作状态以及选择组成部分的设计指南。最后,为1kW原型提供了一些模拟和实验结果,以验证所提出的拓扑。

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