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A flexible five-level cascaded H-bridge inverter for photovoltaic gird-connected systems

机译:用于光伏并网系统的灵活的五级级联H桥逆变器

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With the rapid penetration of photovoltaic (PV) grid-connected system in industrial and commercial application, it is critical to improve the efficiency and enhance the utilization of PV power generation system. This paper proposes a flexible five-level topology based on cascaded multi-level inverter for PV grid-connected system. By adding a bidirectional switch to conventional multi-level inverter, the proposed topology transforms operating mode between two-level H-bridge inverter (HBI) and cascaded multilevel inverter (CMI) according to the variation of DC link voltage. When output voltages of PV arrays are lower, the proposed inverter works in CMI mode to widen the generation range. When output voltages of PV panels are higher, inverter works in HBI mode to increase the efficiency. Hence the system incorporate the low losses feature of HBI and low grid-connected current THD advantages of CMI. This way, a wide range output voltage operation with high efficiency can be achieved without extra DC-DC converter. Experimental results of the proposed five-level CMI are presented to validate the feasibility of the proposed topology.
机译:随着光伏(PV)并网系统在工业和商业应用中的快速普及,提高效率和提高光伏发电系统的利用率至关重要。本文针对光伏并网系统提出了一种基于级联多级逆变器的灵活五级拓扑。通过向传统的多电平逆变器添加双向开关,该拓扑根据直流母线电压的变化在两电平H桥逆变器(HBI)和级联多电平逆变器(CMI)之间转换了工作模式。当光伏阵列的输出电压较低时,建议的逆变器以CMI模式工作,以扩大发电范围。当光伏面板的输出电压较高时,逆变器以HBI模式工作以提高效率。因此,该系统具有HBI的低损耗功能和CMI的低并网电流THD优势。这样,无需额外的DC-DC转换器即可实现高效率的宽范围输出电压操作。提出了五层CMI的实验结果,以验证所提出拓扑的可行性。

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