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A Robust Harmonic Compensation Technique for the Single Phase Grid Connected Inverters under the Distorted Grid Voltage Conditions

机译:电网电压畸变条件下单相并网逆变器的鲁棒谐波补偿技术

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The performance of Single Phase Grid Connected Inverters (SPGCIs) get degraded due to several detrimental factors such as the grid voltage harmonics, the dead time effect and the turn ON/OFF of the switches and so on, which cause the harmonics at the output of Grid Connected Inverters (GCIs). Therefore, it is not easy to satisfy the harmonic standards such as IEEE 519 and P1547 without the help of harmonic compensator. In this paper, the Digital Lock-in Amplifier (DLA) based harmonic compensation is proposed, which makes it possible to extract the amplitude and phase information of the harmonics from the output current and compensate it by using a simple PI controller in a feedforward manner. In order to show the superior performance of the proposed harmonic compensation technique, it is compared with those of conventional harmonic compensation methods in terms of the effectiveness of harmonic elimination, complexity and implementation. The validity of the proposed harmonic compensation techniques is verified through the PSIM simulation and experiments with a 5kW SPGCI.
机译:单相并网逆变器(SPGCI)的性能由于诸如电网电压谐波,停滞时间效应和开关的导通/关断等多种有害因素而降低,这些因素会导致在输出端产生谐波。并网逆变器(GCI)。因此,在没有谐波补偿器的情况下,要满足IEEE 519和P1547等谐波标准并不容易。本文提出了一种基于数字锁相放大器(DLA)的谐波补偿,它可以从输出电流中提取谐波的幅度和相位信息,并通过简单的PI控制器以前馈方式对其进行补偿。 。为了显示所提出的谐波补偿技术的优越性能,在消除谐波的有效性,复杂性和实现方面,将其与常规谐波补偿方法进行了比较。通过PSIM仿真和5kW SPGCI的实验,验证了所提出的谐波补偿技术的有效性。

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