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A study of grid-connected PV-AC module with active power decoupling and ESS

机译:电网连接PV-AC模块与有功功率去耦和ESS的研究

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Because AC module system is directly connected to grid source, power pulsation is appeared at AC module input capacitor. So, it can adversely affect maximum power point tracking (MPPT) control. Furthermore, photovoltaic (PV) module power can be fluctuated with varying irradiation while constant load demand. To reduce power fluctuation for MPPT control and stabilize the PV system with varying conditions, conventional flyback converter has auxiliary circuits for active decoupling and energy storage system (ESS) is proposed for energy efficiency. Proposed AC module system can solve the above problem (i.e. power pulsation, varying irradiation and load demand) by auxiliary circuit operation. But when the proposed AC module system is operating, it has various modes according to power flowing. In this paper, analyzes proposed AC module of operating modes, which show perform the overall system operation. To confirming proposed AC module system, verified by PSIM simulation result.
机译:由于AC模块系统直接连接到电网源,因此AC模块输入电容上出现了电源脉动。因此,它可能会对最大功率点跟踪(MPPT)控制产生不利影响。此外,光伏(PV)模块功率可以在不同的照射时波动,而恒定负载需求。为了降低MPPT控制的功率波动并通过不同的条件稳定PV系统,传统的反激式转换器具有用于有源去耦和能量存储系统(ESS)的辅助电路,以实现能效。所提出的AC模块系统可以通过辅助电路操作来解决上述问题(即功率脉动,不同的辐照和负载需求)。但是当建议的AC模块系统运行时,它具有根据电力流动的各种模式。在本文中,分析了所提出的操作模式AC模块,显示整体系统操作。要确认提出的AC模块系统,请通过PSIM仿真结果验证。

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