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The case study of Automatic Power Factor Controller on distorted system with overview of harmonics reduction technique

机译:谐波抑制技术概述畸变系统中功率因数自动控制器的案例研究

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The rational use of electrical energy calls for use energy with less loss. That means controlling all factors in electrical networks that source losses. One of these is lagging reactive power. As we know the most of industrial load is inductive as well as nonlinear which causes the production of low power factor and harmonics respectively. Static capacitor is used to improve the power factor and reactor is for harmonics reducer. So there is need to get above equipment together to improve system. The working of such equipment is totally automatic because if capacitor or reactor are switched on continuously then the life as well as efficiency is reduces. So it is very needful for industry to maintain their power factor as well minimizing the harmonics.
机译:合理使用电能需要消耗更少的能量。这意味着控制电网中导致损耗的所有因素。其中之一是无功功率滞后。众所周知,大多数工业负载是感性负载和非线性负载,分别导致产生低功率因数和谐波。静态电容器用于提高功率因数,电抗器用于降低谐波。因此,需要将上述设备集中在一起以改善系统。这种设备的工作是完全自动的,因为如果连续打开电容器或电抗器,则寿命和效率都会降低。因此,对于工业界来说,保持其功率因数以及最大程度地减少谐波非常必要。

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