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首页> 外文期刊>Industrial Electronics, IEEE Transactions on >Modeling and Harmonic Optimization of a Two-Stage Saturable Magnetically Controlled Reactor for an Arc Suppression Coil
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Modeling and Harmonic Optimization of a Two-Stage Saturable Magnetically Controlled Reactor for an Arc Suppression Coil

机译:消弧线圈的两级饱和磁控反应堆的建模与谐波优化

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摘要

Magnetically controlled reactors (MCRs) are usually used as three-phase shunt reactors. They have low harmonic distortion independent of the third harmonic current because most three-phase MCRs are delta connected. However, as arc suppression coils, MCRs are operated in the single-phase mode, and the harmonics can be much higher than those of three-phase MCRs. In this paper, the structure and the mathematical model of a two-stage saturable MCR (TSMCR) are proposed. There are two stages with different lengths and areas in the iron cores. The stages saturate at different times when the TSMCR outputs reactive current. The current harmonics of the first saturated stage can be compensated for when the second stage begins to saturate, to reduce the total harmonics of the output current. The mathematical model that reveals the distribution characteristics of the current harmonics for the TSMCR is also presented. A study of the mathematical model indicates that there are two key factors that affect the total current harmonics of the TSMCR. One is the parameter $k$, which represents the area ratio of the second stage to the first stage. The other one is the parameter $m$, which represents the ratio of the length of the first stage to the total length of the magnetic valve in the iron core. The simulations and experiments show that the maximum current harmonics of the novel MCR can be limited to 3.61% of the rated output current when $k$ and $m$ are chosen according to the theoretical mathematical model.
机译:磁控电抗器(MCR)通常用作三相并联电抗器。它们具有低谐波失真,而与三次谐波电流无关,因为大多数三相MCR是三角形连接的。然而,作为消弧线圈,MCR以单相模式运行,并且谐波可能比三相MCR的谐波高得多。本文提出了两级可饱和MCR(TSMCR)的结构和数学模型。铁芯有两个长度和面积不同的阶段。当TSMCR输出无功电流时,该阶段在不同的时间饱和。当第二级开始饱和时,可以补偿第一饱和级的电流谐波,以减少输出电流的总谐波。还提出了揭示TSMCR电流谐波分布特征的数学模型。对数学模型的研究表明,有两个关键因素会影响TSMCR的总电流谐波。一个是参数$ k $,它表示第二阶段与第一阶段的面积比。另一个是参数$ m $,它表示第一级的长度与铁芯中电磁阀总长度的比值。仿真和实验表明,根据理论数学模型选择$ k $和$ m $时,新型MCR的最大谐波电流可以限制为额定输出电流的3.61%。

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