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Low-voltage ride through capability of three-phase grid-connected photovoltaic inverters with slim film capacitors

机译:低压乘坐通过三相电网连接的三相电网连接的光伏逆变器具有纤薄薄膜电容器的能力

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摘要

In grid-connected photovoltaic (PV) power stations, improving the life expectancy and long-term reliability of three-phase PV inverters is urgently needed to match the significantly higher lifetime of the PV modules. A key contribution towards such improvement is replacing the conventional electrolytic film capacitors inside the inverter with metallized polypropylene film ones. With more and more PV power generation systems being installed, the utilities require these generation systems to remain connected to the ac grid during grid faults/voltage sags to ensure the operating stability of the ac power system. This paper presents a detailed analysis of how the control of PV inverters deploying film capacitors can be improved to enable them comply with the low voltage ride through capability demanded by the stringent current grid codes in the events of voltage sags/grid faults. The simulation and experimental results obtained in this study confirm that this modified inverter configuration can meet the grid codes and retain longer lifetimes expected from the use of slim film capacitors.
机译:在电网连接的光伏(PV)发电站中,迫切需要提高三相PV逆变器的寿命和长期可靠性,以匹配光伏模块的显着更高的寿命。对这种改进的关键贡献正在用金属化聚丙烯薄膜更换逆变器内的传统电解膜电容器。随着正在安装的越来越多的PV发电系统,本实用程序需要这些生成系统在网格故障/电压凹陷期间保持连接到AC电网,以确保交流电源系统的操作稳定性。本文提出了如何改进PV逆变器的控制如何改进PV逆变器的控制,以使它们能够通过严格电流栅格故障事件中所需的严格电流网格代码所需的能力来符合低电压骑行。本研究中获得的模拟和实验结果证实,该改进的逆变器配置可以满足网格码,并保留使用纤薄薄膜电容器的预期寿命更长。

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