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Analysis and design of single-phase current-source grid-connected PV inverter

机译:单相电流源并网光伏逆变器的分析与设计

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This paper investigates the performance of a 150 W single-phase current-source grid-connected inverter for photovoltaic (PV) applications. The constant-current source is realized using a large DC link inductor and the inverter is implemented using a single boost switch, a H-bridge inverter and a CL output filter. Although the DC link inductor causes the inverter to be less efficient than an equivalent voltage-source inverter, it offers lower cost due to the zero-current switching and lower number of components. In addition, the output current is easily controlled using the boost switch and offers simple open-loop and feed-forward control. The paper compares the simulated and measured inverter performance with regards to output power, total harmonic distortion and power factor. Additionally the scaling of the concept to a higher power (1.2 kW) inverter was also investigated using simulations.
机译:本文研究了用于光伏(PV)应用的150 W单相电流源并网逆变器的性能。恒流源使用大型直流环节电感器实现,逆变器使用单个升压开关,H桥逆变器和CL输出滤波器实现。尽管直流环节电感器使逆变器的效率不及等效电压源逆变器,但由于零电流开关和更少的组件数量,其成本更低。此外,使用升压开关可轻松控制输出电流,并提供简单的开环和前馈控制。本文比较了仿真和测量的逆变器性能,包括输出功率,总谐波失真和功率因数。此外,还通过仿真研究了将该概念扩展到更高功率(1.2 kW)的逆变器。

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