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Harmonic Injection-Based Power Fluctuation Control of Three-Phase PV Systems under Unbalanced Grid Voltage Conditions

机译:电网电压不平衡条件下三相光伏发电系统基于谐波注入的功率波动控制

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Unbalanced voltage will inevitably cause power and DC voltage fluctuations in a three-phase PV system. The deterioration of power quality will do great harm to the PV panels and the loads, so it is necessary to suppress the power fluctuations. This paper further explores the coefficients control strategy of PV converters under unbalanced voltage conditions, aiming to suppress power fluctuations by controlling the injection of some specific orders of current harmonics into the grid. In order to achieve this, the current reference of the PV inverter has been changed by bringing in two control coefficients, and the expression of each order of the current harmonics has been deduced. Based on the standards of PV systems, the regions from which the coefficients can be selected are determined. Then, by tuning these coefficients in the feasible regions, the output parameters (power fluctuation, current THD and odd harmonics) can be controlled precisely. The model of this method is built and simulated in PSCAD/EMTDC, and as a result, it is shown that the power fluctuations can be restricted according to different power quality requirements.
机译:电压不平衡将不可避免地导致三相光伏系统中的电源和直流电压波动。电能质量的下降会严重损害光伏电池板和负载,因此有必要抑制电能波动。本文进一步探讨了在不平衡电压条件下光伏转换器的系数控制策略,旨在通过控制一些特定阶次的电流谐波注入电网来抑制功率波动。为了实现这一点,通过引入两个控制系数来更改PV逆变器的电流参考,并推导了电流谐波的每个阶的表达式。根据光伏系统的标准,确定可以从中选择系数的区域。然后,通过在可行区域内调整这些系数,可以精确地控制输出参数(功率波动,电流THD和奇次谐波)。在PSCAD / EMTDC中建立了该方法的模型并进行了仿真,结果表明,可以根据不同的电能质量要求限制功率波动。

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