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Unified-transformer buck-flyback switched-capacitor differential power processor with function of charge balance

机译:具有电荷平衡功能的统一变压器降压反激式开关电容器差分功率处理器

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This paper proposes a new converter topology for PV systems that performs maximum power point tracking (MPPT) with differential power processing (DPP) and charge balancing of battery voltages. The proposed system can control each of the PV modules independently and it can also perform charge balancing for each of the battery cells (modules). Buck converter and Buck-flyback converter are used in the converter circuit which performs as a DPP converter and a string converter in the system. In addition, a capacitor connected to the input of the DPP converter operates as a switched capacitor in the proposed circuit. When PV modules and power conditioning system (PCS) are placed far from each other, inserting switched capacitor between the transformer and the secondary buck converters eliminates all high-frequency parasitic components resulting to all high-frequency losses. The proposed system is analyzed by steady-state equations and by computer simulations. Finally, the proposed system is also verified by a hardware experiments.
机译:本文提出了一种用于光伏系统的新型转换器拓扑结构,该拓扑结构通过差分功率处理(DPP)和电池电压的电荷平衡来执行最大功率点跟踪(MPPT)。所提出的系统可以独立地控制每个PV模块,并且还可以为每个电池单元(模块)执行电荷平衡。在转换器电路中使用降压转换器和降压反激转换器,该转换器电路在系统中充当DPP转换器和串式转换器。另外,在所提出的电路中,连接到DPP转换器的输入的电容器用作开关电容器。当光伏模块和功率调节系统(PCS)相互远离放置时,在变压器和次级降压转换器之间插入开关电容器可消除所有高频寄生成分,从而导致所有高频损耗。通过稳态方程和计算机仿真对提出的系统进行了分析。最后,还通过硬件实验验证了所提出的系统。

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