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A new control method for voltage harmonics compensation in islanded microgrid

机译:孤岛微电网电压谐波补偿的新控制方法

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If sensitive loads are connected to point of common connection (PCC), compensation should be carried out in order to reduce PCC voltage harmonics. In this case, compensation is performed by the interface converters of distributed generation (DG) units. In this paper, a novel method is proposed for voltage harmonics compensation in islanded microgrids. Also, to decrease the asymmetry among phase impedances of microgrid, a novel structure is proposed to generate virtual impedance. At fundamental frequency, the proposed structure for the virtual impedance improves the control of the fundamental component of the power, and at harmonic frequencies, it acts to adaptively improve nonlinear load sharing among DG units. In the structures of the proposed harmonic compensator and the proposed virtual impedance, a self-tuning filter (STF) is used for separating the fundamental component from the harmonic components. This STF decreases the number of the phase locked loop (PLL). The Simulation results in MATLAB/SIMULINK environment show the efficiency of the proposed approach in improving load sharing and decreasing voltage harmonics.
机译:如果将敏感负载连接到公共连接点(PCC),则应进行补偿以减少PCC电压谐波。在这种情况下,补偿由分布式发电(DG)单元的接口转换器执行。本文提出了一种新的孤岛微电网电压谐波补偿方法。另外,为了减小微电网的相阻抗之间的不对称性,提出了一种新颖的结构来产生虚拟阻抗。在基本频率下,拟议的虚拟阻抗结构改善了对电源基本分量的控制,而在谐波频率下,它的作用是自适应地改善DG单元之间的非线性负载分配。在所提出的谐波补偿器和所提出的虚拟阻抗的结构中,使用了一个自调谐滤波器(STF)来将基波分量与谐波分量分开。该STF减少了锁相环(PLL)的数量。在MATLAB / SIMULINK环境中的仿真结果表明,该方法在改善负载共享和降低电压谐波方面是有效的。

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