首页> 外文期刊>American Journal of Electrical Power and Energy Systems >Adaptive Balancing by Reactive Compensators of Three-Phase Linear Loads Supplied by Nonsinusoidal Voltage from Four-Wire Lines
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Adaptive Balancing by Reactive Compensators of Three-Phase Linear Loads Supplied by Nonsinusoidal Voltage from Four-Wire Lines

机译:通过来自四线管道提供的三相线性载荷的反应补偿器自适应平衡

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A method of the design of an adaptive balancing reactive compensator in four-wire systems with linear loads and nonsinusoidal voltage is described in this article. The method of compensation is founded on the Currents' Physical Components (CPC) - based power theory of three-phase systems with nonsinusoidal voltages and currents. The compensator is built of two sub-compensators of Y and structure, respectively. The Y compensator reduces the reactive current and the zero sequence symmetrical component of the unbalanced current. The compensator reduces the negative sequence symmetrical component of the unbalanced current. The positive sequence symmetrical component of the unbalanced current and the scattered current remain uncompensated. It is because shunt reactive compensators do not have any capability for that. Thyristor Switched Inductors (TSIs) enable the susceptance control of the compensator branches, referred to in the article as Thyristor Controlled Susceptance (TCS) branches. Periodic switching of thyristors in these branches causes the generation of harmonic currents, in particular the third-order harmonic. Moreover, in the presence of the supply voltage harmonics, a resonance of the equivalent capacitance of the compensator with the distribution system inductance can occur. These two harmful phenomena in the compensator suggested were reduced by the selection of a special structure of the TCS branches and their LC parameters. The presented method of the adaptive compensator synthesis was verified in the article with a numerical example and results of computer modeling of the load with an adaptive compensator.
机译:在本文中描述了一种设计具有线性载荷和非内衬电压的四线系统中自适应平衡反应补偿器的方法。补偿方法建立在具有非内衬电压和电流的三相系统的电流的基于电流(CPC)的电源理论。补偿器分别由y和结构的两个子补偿器构成。 Y补偿器降低了不平衡电流的无功电流和零序对称分量。补偿器减少了不平衡电流的负序列对称分量。不平衡电流和散射电流的正序列对称分量保持不铜。这是因为分流反应补偿器没有任何能力。晶闸管开关电感器(TSIS)使得补偿器分支的频率控制能够控制,作为晶闸管控制的频率(TCS)分支。这些分支中的晶闸管的周期性切换导致谐波电流的产生,特别是三阶谐波。此外,在供应电压谐波的存在中,可能发生具有分配系统电感的补偿器的等效电容的谐振。通过选择TCS分支的特殊结构及其LC参数,减少了补偿器中的这两个有害现象。在物品中验证了自适应补偿器合成的呈现方法,其中具有数值示例和具有自适应补偿器的负载的计算机建模的结果。

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