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Harmonic optimization for the multi-stage saturable magnetically controlled reactor using particle swarm optimization algorithm

机译:基于粒子群算法的多级可饱和磁控反应堆谐波优化

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Magnetically controlled reactors (MCRs) as shunt reactors have offered flexible ways regulating the reactive power in the power system. MCRs can be implemented in ultra high voltage power systems and are much more economical and operational than the thyristor controlled reactors (TCRs). However, one remarkable defect of the MCRs is that they will inject great harmonics into the power system. In this paper, the structure and the mathematical model of a harmonic free multi-stage saturable MCR (MSMCR) are proposed. This paper illustrated the use of the particle swarm optimization (PSO) algorithm to decide the areas of the stages based on the harmonics mathematical model of the MSMCR. Since the 3rd harmonic will not be injected to the power systems if delta connected symmetrically, the current harmonics injected to the power system can be limited to as low as 0.8% of the rated output current of the MSMCR, theoretically. A simulation is finally produced to verify the research in PSCAD/EMTDC.
机译:作为并联电抗器的磁控电抗器(MCR)提供了灵活的方法来调节电力系统中的无功功率。 MCR可以在超高压电源系统中实现,并且比晶闸管控制电抗器(TCR)更经济,更可操作。但是,MCR的一个显着缺陷是它们将向电源系统注入大量谐波。本文提出了无谐波多级可饱和MCR(MSMCR)的结构和数学模型。本文说明了基于MSMCR的谐波数学模型,使用粒子群优化(PSO)算法确定级的面积的方法。由于如果三角形对称连接,则三次谐波将不会注入到电力系统中,因此理论上,注入到电力系统中的电流谐波可以限制为MSMCR额定输出电流的0.8%。最后产生了一个仿真,以验证PSCAD / EMTDC中的研究。

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