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Topological Comparison and Analysis of Medium-voltage and High-power Direct-linked PV Inverter 被引量:16
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作者 Xing Zhang Mingda Wang +3 位作者 Tao Zhao Wang Mao Yuhua Hu Renxian Cao 《CES Transactions on Electrical Machines and Systems》 CSCD 2019年第4期327-334,共8页
Among all the renewable energy sources,the installed capacity of solar power generation is the fastest growing in recent years,so photovoltaic(PV)power generation still has great market potential.Compared with low-pow... Among all the renewable energy sources,the installed capacity of solar power generation is the fastest growing in recent years,so photovoltaic(PV)power generation still has great market potential.Compared with low-power systems,large-scale PV systems are more commercially attractive,because they can reduce the cost of the system per watt.The PV inverters with centralized and string structure have been applied in large-scale PV plant,but it is difficult to further increase the voltage and power levels for a single converter.In addition,the line-frequency isolation transformer requires a large amount of materials and has a large volume and weight.Therefore,it is a current trend for large-scale PV system to increase the voltage and power levels to directly connect to the medium-voltage power grid.Based on this,this paper investigates and compares several topologies of PV inverters without line-frequency transformer,including the MMC structure and the three-phase cascaded H-bridge(CHB)structure,which are able to directly connect to the 35kV medium-voltage power grid,and can not only make the voltage and power levels higher,but also further reduce the cost and volume of the whole system. 展开更多
关键词 direct-linked PV inverter large-scale PV system MMC structure three-phase CHB structure.
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