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Solar power battery charger with a parallel-load resonant converter

机译:太阳能电池充电器具有平行载荷谐振转换器

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Although fossil fuels have led us to economic prosperity, the extensive use has caused a substantial reduction of fossil fuels. Therefore, the solar energy, as one of the green energy resources, has become an important alternative for the future. In this paper, the parallel loaded resonant converter with the feature of the soft switching technique was used in the circuits of the solar storage battery charger. To avoid the damage of the battery charger due to the variation of the output current of the solar PV panels, a closed-loop boost converter between the solar PV panel and the battery charger was designed to stabilize the output current of the solar PV panel. By designing the characteristic impedance of the resonant tank, the charging current of the storage battery can be calculated and then the charging time for the storage battery can further be estimated. By properly designing the circuit parameters, the parallel loaded resonant converter can be operated in the continuous current conduction mode and the switch can be switched for conduction at zero voltage. The experimental results verified the correctness of the theoretic estimation for the proposed battery charger circuit. The average charging efficiency of the battery charger can be up to 88.7%.
机译:虽然化石燃料导致了我们经济繁荣,但广泛的用途导致化石燃料大幅减少。因此,太阳能作为绿色能源资源之一,已成为未来的重要替代品。在本文中,在太阳能蓄电池充电器的电路中使用了具有软切换技术的特征的并联装载谐振转换器。为避免电池充电器由于太阳能光伏板的输出电流的变化而损坏,因此设计了太阳能光伏面板和电池充电器之间的闭环升压转换器,以稳定太阳能光伏面板的输出电流。通过设计谐振槽的特征阻抗,可以计算蓄电池的充电电流,然后可以进一步估计存储电池的充电时间。通过适当地设计电路参数,并联加载的谐振转换器可以在连续电流导通模式下操作,并且可以在零电压切换开关以导通。实验结果验证了所提出的电池充电器电路的理论估计的正确性。电池充电器的平均充电效率高达88.7%。

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