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Efficient Single Phase Transformerless Inverter for Grid-Tied PVG System With Reactive Power Control

机译:用于无功并网光伏发电系统的高效单相无变压器逆变器

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There has been an increasing interest in transformerless inverter for grid-tied photovoltaic (PV) system due to low cost, high efficiency, light weight, etc. Therefore, many transformerless topologies have been proposed and verified with real power injection only. Recently, almost every international regulation has imposed that a definite amount of reactive power should be handled by the grid-tied PV inverter. According to the standard VDE-AR-N 4105, grid-tied PV inverter of power rating below 3.68KVA, should attain power factor (PF) from 0.95 leading to 0.95 lagging. In this paper, a new high efficiency transformerless topology is proposed for grid-tied PV system with reactive power control. The new topology structure and detail operation principle with reactive power flow is described. The high frequency common-mode (CM) model and the control of the proposed topology are analyzed. The inherent circuit structure of the proposed topology does not lead itself to the reverse recovery issues even when inject reactive power which allow utilizing MOSFET switches to boost the overall efficiency. The CM voltage is kept constant at mid-point of dc input voltage, results low leakage current. Finally, to validate the proposed topology, a 1 kW laboratory prototype is built and tested. The experimental results show that the proposed topology can inject reactive power into the utility grid without any additional current distortion and leakage current. The maximum efficiency and European efficiency of the proposed topology are measured and found to be 98.54% and 98.29%, respectively.
机译:由于成本低,效率高,重量轻等原因,人们越来越关注用于并网光伏(PV)系统的无变压器逆变器。因此,已经提出了许多无变压器拓扑并仅通过有功注入进行了验证。最近,几乎所有国际法规都规定并网光伏逆变器应处理一定量的无功功率。根据标准VDE-AR-N 4105,额定功率低于3.68KVA的并网光伏逆变器应从0.95获得功率因数(PF),从而导致0.95滞后。本文针对具有无功功率控制的并网光伏系统,提出了一种新型的高效无变压器拓扑。描述了具有无功潮流的新拓扑结构和详细操作原理。分析了高频共模(CM)模型和所提出拓扑的控制。即使注入无功功率(允许利用MOSFET开关来提高整体效率),所提出拓扑的固有电路结构也不会导致反向恢复问题。 CM电压在直流输入电压的中点保持恒定,从而导致低泄漏电流。最后,为了验证建议的拓扑结构,构建并测试了1kW的实验室原型。实验结果表明,提出的拓扑结构可以将无功功率注入公用电网,而不会产生任何额外的电流失真和泄漏电流。经测量,该拓扑的最大效率和欧洲效率分别为98.54%和98.29%。

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