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Reduction of Current Harmonic Distortion in Three-Phase Grid-Connected Photovoltaic Inverters via Resonant Current Control

机译:通过谐振电流控制减少三相并网光伏逆变器中的电流谐波失真

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摘要

The resonant current control has been extensively employed to reduce the current harmonic distortion in a wide range of grid-connected distributed generation applications, including photovoltaic (PV) inverters, wind and water turbines, and fuel-cell inverters. However, the performance of these systems is deteriorated when the utility grid voltage experiences abnormal conditions such as voltage harmonics and imbalances. Several advanced control solutions have been recently introduced to cope with this problem but at the cost of a significant increase in the control computational load. This paper first analyzes the limitations of the standard resonant current control operating under abnormal grid conditions and then introduces a control scheme that improves the current harmonic distortion in such adverse conditions without increasing the computational load of the standard current control. This theoretical contribution is validated by means of selected experimental results from a three-phase PV inverter.
机译:在广泛的并网分布式发电应用中,谐振电流控制已广泛用于降低电流谐波失真,包括光伏(PV)逆变器,风力和水轮机以及燃料电池逆变器。但是,当公用电网电压遇到异常情况(例如电压谐波和不平衡)时,这些系统的性能会下降。最近已经引入了几种先进的控制解决方案来解决这个问题,但是其代价是大大增加了控制计算量。本文首先分析了在异常电网条件下运行的标准谐振电流控制的局限性,然后介绍了一种在不增加标准电流控制计算负担的情况下改善这种不利条件下电流谐波失真的控制方案。通过从三相PV逆变器中选择的实验结果验证了这一理论贡献。

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