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Control Strategy Design of Grid-Connected and Stand-Alone Single-Phase Inverter for Distributed Generation

机译:分布式发电并网单机逆变器控制策略设计

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摘要

Dual-mode photovoltaic power system should be capable of operating in grid-connected (GC) and stand-alone (SA) modes for distributed generation. Under different working modes, the optimal parameters of inverter output filters vary. Inverters commonly operate in GC mode, and thus, a small capacitance is beneficial to the GC topology for achieving a reasonable compromise. A predictive current control scheme is proposed to control the grid current in GC mode and thereby obtain high-performance power. As filter are not optimal under SA mode, a compound control strategy consisting of predictive current control, instantaneous voltage control, and repetitive control is proposed to achieve low total harmonic distortion and improve the output voltage spectrum. The seamless transfer between GC mode and SA mode is illustrated in detail. Finally, the simulation and experimental results of a 4 kVA prototype demonstrate the effectiveness of the proposed control strategy.
机译:双模光伏发电系统应能够在分布式发电的并网(GC)和独立(SA)模式下运行。在不同的工作模式下,变频器输出滤波器的最佳参数会有所不同。逆变器通常以GC模式工作,因此,较小的电容有利于GC拓扑结构实现合理的折衷。提出了一种预测性电流控制方案,以GC模式控制电网电流,从而获得高性能的功率。由于滤波器在SA模式下不是最优的,因此提出了一种由预测电流控制,瞬时电压控制和重复控制组成的复合控制策略,以实现较低的总谐波失真并改善输出电压频谱。详细说明了GC模式和SA模式之间的无缝转换。最后,4 kVA原型的仿真和实验结果证明了所提出控制策略的有效性。

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