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- W3135522182 abstract "With the increasing proportion of photovoltaic power generation in the power supply structure, in order to realize the photovoltaic power generation on the grid with parity as soon as possible, it is urgent to find the efficiency improvement and cost reduction methods of photovoltaic power generation system. Former researches have shown that the DC cable loss of photovoltaic power station can be reduced by more than half by using 1500V photovoltaic series, which can significantly reduce the system loss of photovoltaic power station and is very important for the early realization of PV grid parity. Traditional two-level and T-type three-level topology has been widely used in series photovoltaic inverter, but for 1500V series inverter application, the voltage stress of switching element of traditional two-level photovoltaic grid connected inverter is greatly increased, which is difficult to meet the efficiency requirements; the vertical bridge switching voltage stress of T-type three-level circuit is equal to DC bus voltage, So as the bus voltage increases to 1500V, the vertical bridge switch needs to use 1700V switch with higher switching loss, which makes it difficult to optimize the efficiency and power density. Therefore, it is necessary to seek a circuit topology with better technical economy. In this paper, an interleaved active neutral point clamped nine level (ANPC-9L) inverter are proposed, the modulation and control strategy are proposed by analyzing the basic principle of the topology. Finally, experimental results obtained with an experimental prototype are presented to verify the effectiveness of the proposed topology, modulation and control strategy." @default.
- W3135522182 created "2021-03-15" @default.
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- W3135522182 date "2020-11-29" @default.
- W3135522182 modified "2023-09-23" @default.
- W3135522182 title "Modulation and Control Strategy for Interleaved Active Neutral-Point Clamped Nine-Level Converter" @default.
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- W3135522182 doi "https://doi.org/10.1109/ipemc-ecceasia48364.2020.9368178" @default.
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