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首页> 外文期刊>Electric power systems research >Improved instantaneous power theory based current harmonic extraction for unbalanced electrical grid conditions
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Improved instantaneous power theory based current harmonic extraction for unbalanced electrical grid conditions

机译:不平衡电网条件下基于改进瞬时功率理论的电流谐波提取

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摘要

This paper presents a novel harmonic extraction method named as "virtual input signal based instantaneous power theory (VIS-IPT)". In this study, VIS-IPT is tested in a shunt active power filter (SAPF) for improving the performance under unbalanced electrical energy quality issues. In the operational process, VIS-IPT is used to generate the compensation signals consisting of harmonic/reactive currents. In the proposed method, reference signal generation is extracted for each phase, separately. In VIS-IPT, the compensation signals are obtained from the calculated powers through multiple-phase inverse Clark transformation. In this way, it eliminates the drawback of conventional IPT which calculates the undesired average reference under unbalanced situations. Moreover, the additional use of PLL for synchronization is eliminated in the proposed method. In this context, a three-phase SAPF system with nonlinear load groups is constructed and analysed in Matlab/Simulink environment in order to prove the efficacy of the proposed method. In addition, the proposed VIS-IPT method is compared with the conventional IPT method through a variety of case studies. The proposed method is examined under different case studies including balanced/unbalanced/distorted voltage and balanced/unbalanced load conditions. The case studies show that the proposed method has excellent compensation capability performance in comparison with the conventional method.
机译:本文提出了一种新的谐波提取方法,称为“基于虚拟输入信号的瞬时功率理论(VIS-IPT)”。在这项研究中,VIS-IPT在并联有源功率滤波器(SAPF)中进行了测试,以提高在不平衡电能质量问题下的性能。在运行过程中,VIS-IPT用于生成由谐波/无功电流组成的补偿信号。在提出的方法中,分别为每个相位提取参考信号生成。在VIS-IPT中,补偿信号是通过多相克拉克逆变换从计算出的功率中获得的。这样,它消除了传统IPT的缺点,该缺点在不平衡情况下计算不希望的平均参考。此外,在所提出的方法中消除了将PLL用于同步的额外使用。在这种情况下,在Matlab / Simulink环境中构造并分析了带有非线性载荷组的三相SAPF系统,以证明所提方法的有效性。此外,通过各种案例研究,将提出的VIS-IPT方法与常规IPT方法进行了比较。在包括平衡/不平衡/失真电压和平衡/不平衡负载条件在内的不同案例研究中,对所提出的方法进行了研究。实例研究表明,与传统方法相比,该方法具有很好的补偿性能。

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