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首页> 外文期刊>Renewable Power Generation, IET >Maximising power yield in a transformerless single-phase grid connected inverter servicing two separate photovoltaic panels
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Maximising power yield in a transformerless single-phase grid connected inverter servicing two separate photovoltaic panels

机译:在为两个单独的光伏板提供服务的无变压器单相并网逆变器中,最大程度地提高发电量

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摘要

A single-phase grid connected transformerless inverter for solar photovoltaic (PV) systems is presented in this study. This inverter has the capability to extract maximum power from two separate PV panels operating under equal as well as mismatched meteorological conditions. The proposed inverter is based on the buck-boost principle, and hence, can tolerate a wide variation of voltage in both the PV panels. Further, due to the neutral point clamped structure of the inverter the neutral/ground terminal of grid is directly connected at the midpoint of two PV panels. This eliminates the flow of leakage current through the parasitic capacitances existing between the PV panels and the ground. The proposed inverter requires six switches and is free from shoot-through fault. This inverter does not require sensing of grid current for its operation. The principle of operation of the inverter is presented. The control strategy devised for the inverter is provided. The theoretical analysis is supported through detailed simulation studies carried out on Matlab/Simulink platform. Exhaustive experimental results obtained from a scaled down laboratory prototype developed for the inverter are presented to confirm the validity of the scheme.
机译:本研究提出了一种用于太阳能光伏(PV)系统的单相并网无变压器逆变器。该逆变器具有从在相等以及不匹配的气象条件下运行的两个单独的光伏面板中提取最大功率的能力。提出的逆变器基于降压-升压原理,因此可以忍受两个PV面板中的宽电压变化。此外,由于逆变器的中性点钳位结构,电网的中性点/接地端子直接连接到两个PV板的中点。这消除了泄漏电流流过PV面板与地面之间存在的寄生电容。建议的逆变器需要六个开关,并且不会出现直通故障。该逆变器不需要为运行感应电网电流。介绍了逆变器的工作原理。提供了针对逆变器设计的控制策略。在Matlab / Simulink平台上进行的详细仿真研究为理论分析提供了支持。从为逆变器开发的按比例缩小的实验室原型获得的详尽实验结果已得到证实,以证实该方案的有效性。

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