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A new control method for an interleaved flyback inverter to achieve high efficiency and low output current THD

机译:一种新的控制反向逆变器,实现高效率和低输出电流THD

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In recent years, solar energy systems based on microinverter architectures due to its highest power optimization and design flexibility are gaining popularity. The main focus of this paper is on microinverter, particularly the microinverters that are based on the flyback inverter topology. The flyback inverter operating in discontinuous conduction mode (DCM) and boundary conduction mode (BCM) are used more than the others. Control strategies of flyback inverter have different impact on the losses and the efficiency. In the interleaved flyback inverter, it is noted that the turn-off and the gate driving losses under BCM are much higher than DCM. This translates into a significant reduction of the light load efficiency. In this paper based on the loss analysis, a control strategy combing the two DCM and BCM control for the interleaved flyback inverter is proposed to improve the efficiency by reducing switching frequency in the light load current. Finally, simulation results based on an interleaved flyback inverter are presented. It is shown that the proposed control strategy can improve the efficiency and THD of the output current.
机译:近年来,由于其功率优化最高和设计灵活性,基于微逆变器架构的太阳能系统是普及的。本文的主要重点是微逆变器,特别是基于反向逆变器拓扑的微逆器。以不连续的传导模式(DCM)和边界传导模式(BCM)运行的反向逆变器比其他相位使用。反向逆变器的控制策略对损失的影响不同。在交织的反向逆变器中,应注意,在BCM下的关断和栅极驱动损耗远高于DCM。这转化为光负荷效率的显着降低。在本文的基础上,基于损耗分析,梳理两个DCM和BCM控制的控制策略,提出了通过在光负载电流中降低开关频率来提高效率。最后,提出了基于交织反向逆变器的仿真结果。结果表明,所提出的控制策略可以提高输出电流的效率和TH。

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