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Mitigation of Oscillating Power Effect on PV Power and Grid Current in Single-phase Single-stage PV Grid-tied Systems

机译:单相单级光伏并网系统中振荡功率对光伏功率和电网电流的影响的缓解

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A photovoltaic system connected to single-phase utility, via a single-stage voltage source inverter, is considered in this paper. The inverter DC-side capacitor is reduced to almost one tenth its value to improve system reliability and life time. However, this decreases its buffering effect against single-phase grid power oscillations, resulting in high DC-link even harmonics which inject low-order harmonics in utility current. To overcome the latter, a resonant filter is added at PV output to decouple it from the rippled DC-link. This filter removes harmonic components, of second and fourth order, from PV power. Thus, the tracking performance of the array maximum power is greatly enhanced. Moreover, the inverter outer voltage loop is modified to measure the clean PV voltage rather the rippled DC-link voltage which in turn eliminates grid current harmonics. Simulation results verified the effectiveness of the applied filter and voltage loop modification.
机译:本文考虑了通过单级电压源逆变器连接到单相公用事业的光伏系统。逆变器的直流侧电容器减小到其值的十分之一左右,以提高系统的可靠性和使用寿命。但是,这降低了其对单相电网功率振荡的缓冲效果,导致产生高直流母线偶次谐波,从而在公用事业电流中注入低次谐波。为了克服后者,在PV输出处添加了一个谐振滤波器,以使其与波纹状的直流母线去耦。该滤波器从PV功率中去除了二阶和四阶谐波分量。因此,大大提高了阵列最大功率的跟踪性能。此外,对逆变器外部电压环路进行了修改,以测量干净的PV电压,而不是波纹状的直流母线电压,从而消除了电网电流谐波。仿真结果验证了所应用滤波器和电压环路修改的有效性。

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